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Structured Review

Proteintech usp22
Usp22, supplied by Proteintech, used in various techniques. Bioz Stars score: 94/100, based on 25 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/usp22/USP22+Antibody/10__1016_slash_j__phymed__2026__157765-65-17-22
Average 94 stars, based on 25 article reviews
usp22 - by Bioz Stars, 2026-09
94/100 stars

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Related Articles

Incubation:

Article Title: Targeting USP22 with miR‑30‑5p to inhibit the hypoxia‑induced expression of PD‑L1 in lung adenocarcinoma cells.
Article Snippet: Lung cancer is one of the most common forms of cancer and accounts for a significant proportion of all cancer‐related deaths.. Lung adenocarcinoma (LUAD) accounts for approximately 40% of all cases of lung cancer.. In recent years, new developments in both the diagnosis and treatment of LUAD have been achieved.

Article Title: USP11 Exacerbates Radiation-Induced Pneumonitis by Activating Endothelial Cell Inflammatory Response via OTUD5-STING Signaling.
Article Snippet: State Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou, China; yJiangmen Central Hospital, Affiliated Jiangmen Hospital of Sun Yat-sen University, Jiangmen, China; zDepartment of Respiratory Medicine, Suzhou Science & Technology Town Hospital, Suzhou, China; and xDepartment of Radiotherapy, Affiliated Changzhou No. 2 People’s Hospital of Nanjing Medical University, Changzhou, China

Ubiquitin Proteomics:

Article Title: AGEs-RAGE system down-regulates Sirt1 through the ubiquitin-proteasome pathway to promote FN and TGF-β1 expression in male rat glomerular mesangial cells.
Article Snippet: MG-132 and cycloheximide (CHX) were purchased from Calbiochem. .. Antibodies against FN, Sirt1 (rabbit), RAGE, rabbit IgG, mouse IgG, and goat IgG (Santa Cruz Biotechnology, Inc); TGF- 1, Sirt1 (mouse), and ubiquitin (Cell Signaling Technology); USP9X, USP22, Myc, and GFP (Proteintech Group); HA (Abmart); and tubulin (Sigma) were purchased from commercial sources. .. Horseradish peroxidaseconjugated secondary antibodies were obtained from Promega.

Article Title: Berberine promotes β-catenin ubiquitination and inhibits its nuclear translocation by targeting USP22 in colorectal cancers
Article Snippet: This is a PDF of an article that has undergone enhancements after acceptance, such as the addition of a cover page and metadata, and formatting for readability.. This version will undergo additional copyediting, typesetting and review before it is published in its final form.. As such, this version is no longer the Accepted Manuscript, but it is not yet the definitive Version of Record; we are providing this early version to give early visibility of the article.

FLAG-tag:

Article Title: Berberine promotes β-catenin ubiquitination and inhibits its nuclear translocation by targeting USP22 in colorectal cancers
Article Snippet: This is a PDF of an article that has undergone enhancements after acceptance, such as the addition of a cover page and metadata, and formatting for readability.. This version will undergo additional copyediting, typesetting and review before it is published in its final form.. As such, this version is no longer the Accepted Manuscript, but it is not yet the definitive Version of Record; we are providing this early version to give early visibility of the article.

Blocking Assay:

Article Title: USP22 maintains gastric cancer stem cell stemness and promotes gastric cancer progression by stabilizing BMI1 protein.
Article Snippet: Equal amounts of proteins (30 μg) were subjected to SDS-PAGE and transferred to polyvinylidene fluoride membranes (Millipore). .. The membranes were treated with 1% blocking solution in TBS for 1 h, and immunoblots were probed with the indicated antibodies: USP22 (Santa Cruz), BMI1 (Abcam), CD133 (Abcam), SOX2 (Abcam), P21 (Proteintech), ubH2A (CST), EZH2 (CST), H3K27Me3 (CST), tubulin (Santa Cruz), HA (Abmart) GAPDH (Santa Cruz), and actin (Santa Cruz) at 4 °C overnight. .. Then the membranes were washed and incubated with HRP-labelled secondary antibodies (1:5,000; Santa Cruz).

Western Blot:

Article Title: USP22 maintains gastric cancer stem cell stemness and promotes gastric cancer progression by stabilizing BMI1 protein.
Article Snippet: Equal amounts of proteins (30 μg) were subjected to SDS-PAGE and transferred to polyvinylidene fluoride membranes (Millipore). .. The membranes were treated with 1% blocking solution in TBS for 1 h, and immunoblots were probed with the indicated antibodies: USP22 (Santa Cruz), BMI1 (Abcam), CD133 (Abcam), SOX2 (Abcam), P21 (Proteintech), ubH2A (CST), EZH2 (CST), H3K27Me3 (CST), tubulin (Santa Cruz), HA (Abmart) GAPDH (Santa Cruz), and actin (Santa Cruz) at 4 °C overnight. .. Then the membranes were washed and incubated with HRP-labelled secondary antibodies (1:5,000; Santa Cruz).

Sequencing:

Article Title: Ubiquitin‐specific protease 22 acts as an oncoprotein to maintain glioma malignancy through deubiquitinating B cell‐specific Moloney murine leukemia virus integration site 1 for stabilization
Article Snippet: .. In a typical procedure, the DNA sequence encoding BMI1 and USP22 was PCR‐amplified from a full‐length human BMI1 (BC011652; Proteintech Group, Rosemont, IL, USA) and USP22 (BC126898; Proteintech Group) expression construct. ..

Polymerase Chain Reaction:

Article Title: Ubiquitin‐specific protease 22 acts as an oncoprotein to maintain glioma malignancy through deubiquitinating B cell‐specific Moloney murine leukemia virus integration site 1 for stabilization
Article Snippet: .. In a typical procedure, the DNA sequence encoding BMI1 and USP22 was PCR‐amplified from a full‐length human BMI1 (BC011652; Proteintech Group, Rosemont, IL, USA) and USP22 (BC126898; Proteintech Group) expression construct. ..

Expressing:

Article Title: Ubiquitin‐specific protease 22 acts as an oncoprotein to maintain glioma malignancy through deubiquitinating B cell‐specific Moloney murine leukemia virus integration site 1 for stabilization
Article Snippet: .. In a typical procedure, the DNA sequence encoding BMI1 and USP22 was PCR‐amplified from a full‐length human BMI1 (BC011652; Proteintech Group, Rosemont, IL, USA) and USP22 (BC126898; Proteintech Group) expression construct. ..

Construct:

Article Title: Ubiquitin‐specific protease 22 acts as an oncoprotein to maintain glioma malignancy through deubiquitinating B cell‐specific Moloney murine leukemia virus integration site 1 for stabilization
Article Snippet: .. In a typical procedure, the DNA sequence encoding BMI1 and USP22 was PCR‐amplified from a full‐length human BMI1 (BC011652; Proteintech Group, Rosemont, IL, USA) and USP22 (BC126898; Proteintech Group) expression construct. ..

Imaging:

Article Title: USP11 Exacerbates Radiation-Induced Pneumonitis by Activating Endothelial Cell Inflammatory Response via OTUD5-STING Signaling.
Article Snippet: State Key Laboratory of Radiation Medicine and Protection, School of Radiation Medicine and Protection, Medical College of Soochow University, Suzhou, China; yJiangmen Central Hospital, Affiliated Jiangmen Hospital of Sun Yat-sen University, Jiangmen, China; zDepartment of Respiratory Medicine, Suzhou Science & Technology Town Hospital, Suzhou, China; and xDepartment of Radiotherapy, Affiliated Changzhou No. 2 People’s Hospital of Nanjing Medical University, Changzhou, China



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Endothelial-specific knockdown of <t>USP22</t> inhibited EndoMT and hippocampal inflammation. (A) Representative images showed the colocalization of GFP signal (green) and CD31 immunofluorescence (red) in mouse hippocampus. Scale bar: 200 μm. (B) The representative blots showed the changes in ZO-1, Claudin5, α-SMA, and iNOS expression within the hippocampus in the control group and P. gingivalis -infected mice injected <t>with</t> <t>USP22-shRNA</t> AAV. (C) Bar graph with scatter points showed the quantification of USP22 in (A) . (D) Bar graph with scatter points showed the quantification of ZO-1 in (A) . (E) Bar graph with scatter points showed the quantification of Claudin5 in (A) . (F) Bar graph with scatter points showed the quantification of α-SMA in (A) . (G) Bar graph with scatter points showed the quantification of iNOS in (A) . (H,I) Bar graphs with scatter points showed the quantification of IL-1β mRNA (H) and IL-6 mRNA (I) in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. * p < 0.05, ** p < 0.01, and *** p < 0.001.
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Endothelial-specific knockdown of <t>USP22</t> inhibited EndoMT and hippocampal inflammation. (A) Representative images showed the colocalization of GFP signal (green) and CD31 immunofluorescence (red) in mouse hippocampus. Scale bar: 200 μm. (B) The representative blots showed the changes in ZO-1, Claudin5, α-SMA, and iNOS expression within the hippocampus in the control group and P. gingivalis -infected mice injected <t>with</t> <t>USP22-shRNA</t> AAV. (C) Bar graph with scatter points showed the quantification of USP22 in (A) . (D) Bar graph with scatter points showed the quantification of ZO-1 in (A) . (E) Bar graph with scatter points showed the quantification of Claudin5 in (A) . (F) Bar graph with scatter points showed the quantification of α-SMA in (A) . (G) Bar graph with scatter points showed the quantification of iNOS in (A) . (H,I) Bar graphs with scatter points showed the quantification of IL-1β mRNA (H) and IL-6 mRNA (I) in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. * p < 0.05, ** p < 0.01, and *** p < 0.001.
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Endothelial-specific knockdown of <t>USP22</t> inhibited EndoMT and hippocampal inflammation. (A) Representative images showed the colocalization of GFP signal (green) and CD31 immunofluorescence (red) in mouse hippocampus. Scale bar: 200 μm. (B) The representative blots showed the changes in ZO-1, Claudin5, α-SMA, and iNOS expression within the hippocampus in the control group and P. gingivalis -infected mice injected <t>with</t> <t>USP22-shRNA</t> AAV. (C) Bar graph with scatter points showed the quantification of USP22 in (A) . (D) Bar graph with scatter points showed the quantification of ZO-1 in (A) . (E) Bar graph with scatter points showed the quantification of Claudin5 in (A) . (F) Bar graph with scatter points showed the quantification of α-SMA in (A) . (G) Bar graph with scatter points showed the quantification of iNOS in (A) . (H,I) Bar graphs with scatter points showed the quantification of IL-1β mRNA (H) and IL-6 mRNA (I) in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. * p < 0.05, ** p < 0.01, and *** p < 0.001.
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Image Search Results


Endothelial-specific knockdown of USP22 inhibited EndoMT and hippocampal inflammation. (A) Representative images showed the colocalization of GFP signal (green) and CD31 immunofluorescence (red) in mouse hippocampus. Scale bar: 200 μm. (B) The representative blots showed the changes in ZO-1, Claudin5, α-SMA, and iNOS expression within the hippocampus in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. (C) Bar graph with scatter points showed the quantification of USP22 in (A) . (D) Bar graph with scatter points showed the quantification of ZO-1 in (A) . (E) Bar graph with scatter points showed the quantification of Claudin5 in (A) . (F) Bar graph with scatter points showed the quantification of α-SMA in (A) . (G) Bar graph with scatter points showed the quantification of iNOS in (A) . (H,I) Bar graphs with scatter points showed the quantification of IL-1β mRNA (H) and IL-6 mRNA (I) in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. * p < 0.05, ** p < 0.01, and *** p < 0.001.

Journal: Frontiers in Neuroscience

Article Title: USP22 knockdown attenuates P. gingivalis -induced EndoMT and CNS inflammation: a link between periodontitis and neuroinflammation

doi: 10.3389/fnins.2026.1790970

Figure Lengend Snippet: Endothelial-specific knockdown of USP22 inhibited EndoMT and hippocampal inflammation. (A) Representative images showed the colocalization of GFP signal (green) and CD31 immunofluorescence (red) in mouse hippocampus. Scale bar: 200 μm. (B) The representative blots showed the changes in ZO-1, Claudin5, α-SMA, and iNOS expression within the hippocampus in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. (C) Bar graph with scatter points showed the quantification of USP22 in (A) . (D) Bar graph with scatter points showed the quantification of ZO-1 in (A) . (E) Bar graph with scatter points showed the quantification of Claudin5 in (A) . (F) Bar graph with scatter points showed the quantification of α-SMA in (A) . (G) Bar graph with scatter points showed the quantification of iNOS in (A) . (H,I) Bar graphs with scatter points showed the quantification of IL-1β mRNA (H) and IL-6 mRNA (I) in the control group and P. gingivalis -infected mice injected with USP22-shRNA AAV. * p < 0.05, ** p < 0.01, and *** p < 0.001.

Article Snippet: Prior to establishing the oral infection model, microinjection of control or USP22-shRNA AAV (CD144 promoter, 1.5 × 10 12 vg/μL; Sangon Biotech) was performed to target the mouse hippocampus bilaterally.

Techniques: Knockdown, Immunofluorescence, Expressing, Control, Infection, Injection, shRNA

USP22 expression is elevated in HF models. ( A ) USP22 expression in datasets GSE116250 and GSE57345 ; HF cell model in vitro was induced by Ang II, ( B ) CCK-8 assay assessing H9c2 cell viability; ( C ) TUNEL assay detecting apoptosis levels in H9c2 cells; ( D , E ) USP22 expression in H9c2 cells measured by RT-qPCR ( D ) and WB ( E ); CHF rat model was established through AAC, ( F ) Hemodynamic assessment of cardiac function in AAC-induced rats; ( G ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rats. ( H , I ) USP22 expression in rat cardiac tissues detected by RT-qPCR ( H ) and IHC ( I ). Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 expression is elevated in HF models. ( A ) USP22 expression in datasets GSE116250 and GSE57345 ; HF cell model in vitro was induced by Ang II, ( B ) CCK-8 assay assessing H9c2 cell viability; ( C ) TUNEL assay detecting apoptosis levels in H9c2 cells; ( D , E ) USP22 expression in H9c2 cells measured by RT-qPCR ( D ) and WB ( E ); CHF rat model was established through AAC, ( F ) Hemodynamic assessment of cardiac function in AAC-induced rats; ( G ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rats. ( H , I ) USP22 expression in rat cardiac tissues detected by RT-qPCR ( H ) and IHC ( I ). Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Expressing, In Vitro, CCK-8 Assay, TUNEL Assay, Quantitative RT-PCR

USP22 knockdown alleviates cardiomyocyte injury by inhibiting HIF-1α protein stability. USP22 knockdown was mediated by shRNA in H9c2 cells, ( A , B ) Validation of USP22 knockdown efficiency by RT-qPCR ( A ) and WB ( B ); cardiomyocyte injury was induced by Ang II, ( C ) Assessment of H9c2 cell viability using CCK-8 assay; ( D ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( E ) Analysis of apoptosis-related proteins BAX and Bcl-2 expression by WB. Comparisons between two groups were analyzed using the t -test. Multi-group comparisons were analyzed by one-way ANOVA, followed by Tukey’s post-hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 knockdown alleviates cardiomyocyte injury by inhibiting HIF-1α protein stability. USP22 knockdown was mediated by shRNA in H9c2 cells, ( A , B ) Validation of USP22 knockdown efficiency by RT-qPCR ( A ) and WB ( B ); cardiomyocyte injury was induced by Ang II, ( C ) Assessment of H9c2 cell viability using CCK-8 assay; ( D ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( E ) Analysis of apoptosis-related proteins BAX and Bcl-2 expression by WB. Comparisons between two groups were analyzed using the t -test. Multi-group comparisons were analyzed by one-way ANOVA, followed by Tukey’s post-hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Knockdown, shRNA, Biomarker Discovery, Quantitative RT-PCR, CCK-8 Assay, TUNEL Assay, Expressing

USP22 knockdown alleviates myocardial injury in CHF rats. Cardiac-specific knockdown of USP22 was performed in rats subjected to AAC-induced CHF, ( A , B ) USP22 expression in rat cardiac tissues assessed by RT-qPCR ( A ) and IHC ( B ); ( C ) Hemodynamic parameters evaluating cardiac function; ( D ) Biochemical quantification of serum ANP, cTnT, and CK-MB levels in rats. ( E , F ) Representative images of H&E ( E ) and Masson’s trichrome ( F ) staining evaluating cardiomyocyte damage and fibrosis, respectively. Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 knockdown alleviates myocardial injury in CHF rats. Cardiac-specific knockdown of USP22 was performed in rats subjected to AAC-induced CHF, ( A , B ) USP22 expression in rat cardiac tissues assessed by RT-qPCR ( A ) and IHC ( B ); ( C ) Hemodynamic parameters evaluating cardiac function; ( D ) Biochemical quantification of serum ANP, cTnT, and CK-MB levels in rats. ( E , F ) Representative images of H&E ( E ) and Masson’s trichrome ( F ) staining evaluating cardiomyocyte damage and fibrosis, respectively. Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Knockdown, Expressing, Quantitative RT-PCR, Staining

HIF-1α overexpression rescues cardiomyocytes from the protective effects of USP22 knockdown. ( A , B ) Impact of USP22 knockdown on HIF-1α mRNA (A; RT-qPCR) and protein ( B ; WB) expression under Ang II induction; ( C ) Effect of USP22 knockdown on HIF-1α protein stability assessed by CHX chase assay; ( D ) USP22-HIF-1α interaction verified by Co-IP; ( E ) Ubiquitination analysis evaluating the effect of USP22 knockdown on HIF-1α polyubiquitination levels using HA-Ub overexpression and Co-IP; HIF-1α was overexpressed in the context of USP22 knockdow, ( F , G ) Validation of HIF-1α overexpression efficiency by RT-qPCR ( F ) and WB ( G ) in USP22-knockdown cells; ( H ) H9c2 cell viability assessed by CCK-8 assay; ( I ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( J ) Expression of apoptosis-related proteins BAX and Bcl-2 analyzed by WB. Comparisons between two groups were analyzed using the t -test, while comparisons across multiple groups were performed with one-way or two-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: HIF-1α overexpression rescues cardiomyocytes from the protective effects of USP22 knockdown. ( A , B ) Impact of USP22 knockdown on HIF-1α mRNA (A; RT-qPCR) and protein ( B ; WB) expression under Ang II induction; ( C ) Effect of USP22 knockdown on HIF-1α protein stability assessed by CHX chase assay; ( D ) USP22-HIF-1α interaction verified by Co-IP; ( E ) Ubiquitination analysis evaluating the effect of USP22 knockdown on HIF-1α polyubiquitination levels using HA-Ub overexpression and Co-IP; HIF-1α was overexpressed in the context of USP22 knockdow, ( F , G ) Validation of HIF-1α overexpression efficiency by RT-qPCR ( F ) and WB ( G ) in USP22-knockdown cells; ( H ) H9c2 cell viability assessed by CCK-8 assay; ( I ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( J ) Expression of apoptosis-related proteins BAX and Bcl-2 analyzed by WB. Comparisons between two groups were analyzed using the t -test, while comparisons across multiple groups were performed with one-way or two-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Over Expression, Knockdown, Quantitative RT-PCR, Expressing, Co-Immunoprecipitation Assay, Ubiquitin Proteomics, Biomarker Discovery, CCK-8 Assay, TUNEL Assay

PATZ1 promotes USP22 transcription. ( A ) Prediction of upstream transcriptional regulators of USP22 using the JASPAR database; ( B ) Intersection of predicted USP22 regulators with DEGs from GSE116250 and GSE57345 HF datasets; ( C ) Correlation analysis of ZNF460, PATZ1, and MAZ expression with USP22 levels in left ventricular tissue using GEPIA 2.0; ( D ) PATZ1 expression in cardiac tissues from HF patients within datasets GSE116250 and GSE57345 ; ( E , F ) PATZ1 expression in Ang II-treated H9c2 cells assessed by RT-qPCR ( E ) and WB ( F ); Following shRNA-mediated PATZ1 knockdown, ( G , H ) expression levels of PATZ1 and USP22 measured by RT-qPCR ( G ) and WB ( H ); ( I ) Binding of PATZ1 to the USP22 promoter region confirmed by ChIP-qPCR; ( J ) Impact of PATZ1 knockdown on USP22 promoter activity assessed by dual-luciferase reporter assay. Comparisons between two groups were analyzed using the t -test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: PATZ1 promotes USP22 transcription. ( A ) Prediction of upstream transcriptional regulators of USP22 using the JASPAR database; ( B ) Intersection of predicted USP22 regulators with DEGs from GSE116250 and GSE57345 HF datasets; ( C ) Correlation analysis of ZNF460, PATZ1, and MAZ expression with USP22 levels in left ventricular tissue using GEPIA 2.0; ( D ) PATZ1 expression in cardiac tissues from HF patients within datasets GSE116250 and GSE57345 ; ( E , F ) PATZ1 expression in Ang II-treated H9c2 cells assessed by RT-qPCR ( E ) and WB ( F ); Following shRNA-mediated PATZ1 knockdown, ( G , H ) expression levels of PATZ1 and USP22 measured by RT-qPCR ( G ) and WB ( H ); ( I ) Binding of PATZ1 to the USP22 promoter region confirmed by ChIP-qPCR; ( J ) Impact of PATZ1 knockdown on USP22 promoter activity assessed by dual-luciferase reporter assay. Comparisons between two groups were analyzed using the t -test. * P < 0.05, ns P > 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Expressing, Quantitative RT-PCR, shRNA, Knockdown, Binding Assay, ChIP-qPCR, Activity Assay, Luciferase, Reporter Assay

PATZ1 knockdown alleviates HF via the USP22/HIF-1α axis. H9c2 cells were subjected to PATZ1 knockdown with or without USP22 overexpression, ( A , B ) PATZ1 and USP22 expression levels in H9c2 cells assessed by RT-qPCR (A) and WB ( B ); HF cell model in vitro was induced by Ang II, ( C ) H9c2 cell viability measured by CCK-8 assay; ( D ) Quantification of H9c2 apoptosis by TUNEL assay; ( E ) Expression of PATZ1, apoptosis-related proteins (BAX, Bcl-2) and HIF-1α analyzed by WB; AAC-induced CHF rats were subjected to AAV-sh-PATZ1 with or without USP22 overexpression, ( F ) IHC detection of PATZ1, USP22, and HIF-1α expression in cardiac tissues; ( G ) Hemodynamic assessment of cardiac function in rats; ( H ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rat serum; ( I , J ) Representative images of H&E ( I ) and Masson’s trichrome ( J ) staining evaluating myocardial histoarchitecture and fibrosis, respectively. Comparisons across multiple groups were performed with one-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: PATZ1 knockdown alleviates HF via the USP22/HIF-1α axis. H9c2 cells were subjected to PATZ1 knockdown with or without USP22 overexpression, ( A , B ) PATZ1 and USP22 expression levels in H9c2 cells assessed by RT-qPCR (A) and WB ( B ); HF cell model in vitro was induced by Ang II, ( C ) H9c2 cell viability measured by CCK-8 assay; ( D ) Quantification of H9c2 apoptosis by TUNEL assay; ( E ) Expression of PATZ1, apoptosis-related proteins (BAX, Bcl-2) and HIF-1α analyzed by WB; AAC-induced CHF rats were subjected to AAV-sh-PATZ1 with or without USP22 overexpression, ( F ) IHC detection of PATZ1, USP22, and HIF-1α expression in cardiac tissues; ( G ) Hemodynamic assessment of cardiac function in rats; ( H ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rat serum; ( I , J ) Representative images of H&E ( I ) and Masson’s trichrome ( J ) staining evaluating myocardial histoarchitecture and fibrosis, respectively. Comparisons across multiple groups were performed with one-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Following centrifugation to remove cellular debris, the supernatants were incubated overnight at 4 °C under constant rotation with either the primary antibody targeting USP22 (1:100, 55110-1-AP, Proteintech) or a control IgG antibody.

Techniques: Knockdown, Over Expression, Expressing, Quantitative RT-PCR, In Vitro, CCK-8 Assay, TUNEL Assay, Staining

USP22 expression is elevated in HF models. ( A ) USP22 expression in datasets GSE116250 and GSE57345 ; HF cell model in vitro was induced by Ang II, ( B ) CCK-8 assay assessing H9c2 cell viability; ( C ) TUNEL assay detecting apoptosis levels in H9c2 cells; ( D , E ) USP22 expression in H9c2 cells measured by RT-qPCR ( D ) and WB ( E ); CHF rat model was established through AAC, ( F ) Hemodynamic assessment of cardiac function in AAC-induced rats; ( G ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rats. ( H , I ) USP22 expression in rat cardiac tissues detected by RT-qPCR ( H ) and IHC ( I ). Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 expression is elevated in HF models. ( A ) USP22 expression in datasets GSE116250 and GSE57345 ; HF cell model in vitro was induced by Ang II, ( B ) CCK-8 assay assessing H9c2 cell viability; ( C ) TUNEL assay detecting apoptosis levels in H9c2 cells; ( D , E ) USP22 expression in H9c2 cells measured by RT-qPCR ( D ) and WB ( E ); CHF rat model was established through AAC, ( F ) Hemodynamic assessment of cardiac function in AAC-induced rats; ( G ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rats. ( H , I ) USP22 expression in rat cardiac tissues detected by RT-qPCR ( H ) and IHC ( I ). Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Expressing, In Vitro, CCK-8 Assay, TUNEL Assay, Quantitative RT-PCR

USP22 knockdown alleviates cardiomyocyte injury by inhibiting HIF-1α protein stability. USP22 knockdown was mediated by shRNA in H9c2 cells, ( A , B ) Validation of USP22 knockdown efficiency by RT-qPCR ( A ) and WB ( B ); cardiomyocyte injury was induced by Ang II, ( C ) Assessment of H9c2 cell viability using CCK-8 assay; ( D ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( E ) Analysis of apoptosis-related proteins BAX and Bcl-2 expression by WB. Comparisons between two groups were analyzed using the t -test. Multi-group comparisons were analyzed by one-way ANOVA, followed by Tukey’s post-hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 knockdown alleviates cardiomyocyte injury by inhibiting HIF-1α protein stability. USP22 knockdown was mediated by shRNA in H9c2 cells, ( A , B ) Validation of USP22 knockdown efficiency by RT-qPCR ( A ) and WB ( B ); cardiomyocyte injury was induced by Ang II, ( C ) Assessment of H9c2 cell viability using CCK-8 assay; ( D ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( E ) Analysis of apoptosis-related proteins BAX and Bcl-2 expression by WB. Comparisons between two groups were analyzed using the t -test. Multi-group comparisons were analyzed by one-way ANOVA, followed by Tukey’s post-hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Knockdown, shRNA, Biomarker Discovery, Quantitative RT-PCR, CCK-8 Assay, TUNEL Assay, Expressing

USP22 knockdown alleviates myocardial injury in CHF rats. Cardiac-specific knockdown of USP22 was performed in rats subjected to AAC-induced CHF, ( A , B ) USP22 expression in rat cardiac tissues assessed by RT-qPCR ( A ) and IHC ( B ); ( C ) Hemodynamic parameters evaluating cardiac function; ( D ) Biochemical quantification of serum ANP, cTnT, and CK-MB levels in rats. ( E , F ) Representative images of H&E ( E ) and Masson’s trichrome ( F ) staining evaluating cardiomyocyte damage and fibrosis, respectively. Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: USP22 knockdown alleviates myocardial injury in CHF rats. Cardiac-specific knockdown of USP22 was performed in rats subjected to AAC-induced CHF, ( A , B ) USP22 expression in rat cardiac tissues assessed by RT-qPCR ( A ) and IHC ( B ); ( C ) Hemodynamic parameters evaluating cardiac function; ( D ) Biochemical quantification of serum ANP, cTnT, and CK-MB levels in rats. ( E , F ) Representative images of H&E ( E ) and Masson’s trichrome ( F ) staining evaluating cardiomyocyte damage and fibrosis, respectively. Comparisons between two groups were analyzed using the t -test. * P < 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Knockdown, Expressing, Quantitative RT-PCR, Staining

HIF-1α overexpression rescues cardiomyocytes from the protective effects of USP22 knockdown. ( A , B ) Impact of USP22 knockdown on HIF-1α mRNA (A; RT-qPCR) and protein ( B ; WB) expression under Ang II induction; ( C ) Effect of USP22 knockdown on HIF-1α protein stability assessed by CHX chase assay; ( D ) USP22-HIF-1α interaction verified by Co-IP; ( E ) Ubiquitination analysis evaluating the effect of USP22 knockdown on HIF-1α polyubiquitination levels using HA-Ub overexpression and Co-IP; HIF-1α was overexpressed in the context of USP22 knockdow, ( F , G ) Validation of HIF-1α overexpression efficiency by RT-qPCR ( F ) and WB ( G ) in USP22-knockdown cells; ( H ) H9c2 cell viability assessed by CCK-8 assay; ( I ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( J ) Expression of apoptosis-related proteins BAX and Bcl-2 analyzed by WB. Comparisons between two groups were analyzed using the t -test, while comparisons across multiple groups were performed with one-way or two-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: HIF-1α overexpression rescues cardiomyocytes from the protective effects of USP22 knockdown. ( A , B ) Impact of USP22 knockdown on HIF-1α mRNA (A; RT-qPCR) and protein ( B ; WB) expression under Ang II induction; ( C ) Effect of USP22 knockdown on HIF-1α protein stability assessed by CHX chase assay; ( D ) USP22-HIF-1α interaction verified by Co-IP; ( E ) Ubiquitination analysis evaluating the effect of USP22 knockdown on HIF-1α polyubiquitination levels using HA-Ub overexpression and Co-IP; HIF-1α was overexpressed in the context of USP22 knockdow, ( F , G ) Validation of HIF-1α overexpression efficiency by RT-qPCR ( F ) and WB ( G ) in USP22-knockdown cells; ( H ) H9c2 cell viability assessed by CCK-8 assay; ( I ) Quantification of H9c2 cell apoptosis by TUNEL assay; ( J ) Expression of apoptosis-related proteins BAX and Bcl-2 analyzed by WB. Comparisons between two groups were analyzed using the t -test, while comparisons across multiple groups were performed with one-way or two-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Over Expression, Knockdown, Quantitative RT-PCR, Expressing, Co-Immunoprecipitation Assay, Ubiquitin Proteomics, Biomarker Discovery, CCK-8 Assay, TUNEL Assay

PATZ1 promotes USP22 transcription. ( A ) Prediction of upstream transcriptional regulators of USP22 using the JASPAR database; ( B ) Intersection of predicted USP22 regulators with DEGs from GSE116250 and GSE57345 HF datasets; ( C ) Correlation analysis of ZNF460, PATZ1, and MAZ expression with USP22 levels in left ventricular tissue using GEPIA 2.0; ( D ) PATZ1 expression in cardiac tissues from HF patients within datasets GSE116250 and GSE57345 ; ( E , F ) PATZ1 expression in Ang II-treated H9c2 cells assessed by RT-qPCR ( E ) and WB ( F ); Following shRNA-mediated PATZ1 knockdown, ( G , H ) expression levels of PATZ1 and USP22 measured by RT-qPCR ( G ) and WB ( H ); ( I ) Binding of PATZ1 to the USP22 promoter region confirmed by ChIP-qPCR; ( J ) Impact of PATZ1 knockdown on USP22 promoter activity assessed by dual-luciferase reporter assay. Comparisons between two groups were analyzed using the t -test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: PATZ1 promotes USP22 transcription. ( A ) Prediction of upstream transcriptional regulators of USP22 using the JASPAR database; ( B ) Intersection of predicted USP22 regulators with DEGs from GSE116250 and GSE57345 HF datasets; ( C ) Correlation analysis of ZNF460, PATZ1, and MAZ expression with USP22 levels in left ventricular tissue using GEPIA 2.0; ( D ) PATZ1 expression in cardiac tissues from HF patients within datasets GSE116250 and GSE57345 ; ( E , F ) PATZ1 expression in Ang II-treated H9c2 cells assessed by RT-qPCR ( E ) and WB ( F ); Following shRNA-mediated PATZ1 knockdown, ( G , H ) expression levels of PATZ1 and USP22 measured by RT-qPCR ( G ) and WB ( H ); ( I ) Binding of PATZ1 to the USP22 promoter region confirmed by ChIP-qPCR; ( J ) Impact of PATZ1 knockdown on USP22 promoter activity assessed by dual-luciferase reporter assay. Comparisons between two groups were analyzed using the t -test. * P < 0.05, ns P > 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Expressing, Quantitative RT-PCR, shRNA, Knockdown, Binding Assay, ChIP-qPCR, Activity Assay, Luciferase, Reporter Assay

PATZ1 knockdown alleviates HF via the USP22/HIF-1α axis. H9c2 cells were subjected to PATZ1 knockdown with or without USP22 overexpression, ( A , B ) PATZ1 and USP22 expression levels in H9c2 cells assessed by RT-qPCR (A) and WB ( B ); HF cell model in vitro was induced by Ang II, ( C ) H9c2 cell viability measured by CCK-8 assay; ( D ) Quantification of H9c2 apoptosis by TUNEL assay; ( E ) Expression of PATZ1, apoptosis-related proteins (BAX, Bcl-2) and HIF-1α analyzed by WB; AAC-induced CHF rats were subjected to AAV-sh-PATZ1 with or without USP22 overexpression, ( F ) IHC detection of PATZ1, USP22, and HIF-1α expression in cardiac tissues; ( G ) Hemodynamic assessment of cardiac function in rats; ( H ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rat serum; ( I , J ) Representative images of H&E ( I ) and Masson’s trichrome ( J ) staining evaluating myocardial histoarchitecture and fibrosis, respectively. Comparisons across multiple groups were performed with one-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Journal: Scientific Reports

Article Title: Knockdown of PATZ1 alleviates chronic heart failure through the USP22/HIF-1α axis

doi: 10.1038/s41598-025-24336-6

Figure Lengend Snippet: PATZ1 knockdown alleviates HF via the USP22/HIF-1α axis. H9c2 cells were subjected to PATZ1 knockdown with or without USP22 overexpression, ( A , B ) PATZ1 and USP22 expression levels in H9c2 cells assessed by RT-qPCR (A) and WB ( B ); HF cell model in vitro was induced by Ang II, ( C ) H9c2 cell viability measured by CCK-8 assay; ( D ) Quantification of H9c2 apoptosis by TUNEL assay; ( E ) Expression of PATZ1, apoptosis-related proteins (BAX, Bcl-2) and HIF-1α analyzed by WB; AAC-induced CHF rats were subjected to AAV-sh-PATZ1 with or without USP22 overexpression, ( F ) IHC detection of PATZ1, USP22, and HIF-1α expression in cardiac tissues; ( G ) Hemodynamic assessment of cardiac function in rats; ( H ) Biochemical analysis of serum ANP, cTnT, and CK-MB levels in rat serum; ( I , J ) Representative images of H&E ( I ) and Masson’s trichrome ( J ) staining evaluating myocardial histoarchitecture and fibrosis, respectively. Comparisons across multiple groups were performed with one-way ANOVA followed by Tukey’s post hoc test. * P < 0.05, ns P > 0.05.

Article Snippet: Primary antibodies against USP22 (1:200, 55110-1-AP, Proteintech), HIF-1α (1:200, ab179483, Abcam), and PATZ1 (1:200, Cat# SAB2101726, Sigma-Aldrich) were applied and sections were incubated overnight at 4°C.

Techniques: Knockdown, Over Expression, Expressing, Quantitative RT-PCR, In Vitro, CCK-8 Assay, TUNEL Assay, Staining