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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including <t>SMAD2/3,</t> <t>p-SMAD2,</t> p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression
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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including <t>SMAD2/3,</t> <t>p-SMAD2,</t> p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression
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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including <t>SMAD2/3,</t> <t>p-SMAD2,</t> p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression
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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including <t>SMAD2/3,</t> <t>p-SMAD2,</t> p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression
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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including <t>SMAD2/3,</t> <t>p-SMAD2,</t> p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression
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GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including SMAD2/3, p-SMAD2, p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression

Journal: Journal of Translational Medicine

Article Title: Integrative transcriptomic and experimental analysis identifies GREM1 as a pro-metastatic mediator in lung adenocarcinoma

doi: 10.1186/s12967-026-08793-9

Figure Lengend Snippet: GREM1 interacts with BMP2 and regulates TGF-β/SMAD signaling pathway. ( A ) schematic diagram illustrates protein-protein interaction networks involving hub genes and EMT, glycolysis and TGF-β signaling pathways genes, based on findings from the STRING database. ( B ) 3D Binding model analysis(GREM1 in pink and BMP2 in green). ( C ) Immunofluorescence double staining detecting the colocalization and expression changes of GREM1 (red) and BMP2 (green) in the control group, GREM1 knockdown group (sh-GREM1-1), and overexpression group (oe-GREM1). ( D ) Co-immunoprecipitation assay verifying the direct binding between GREM1 and BMP2. ( E ) Western blot analysis of TGF-β/SMAD pathway components, including SMAD2/3, p-SMAD2, p-SMAD3, TGF-β1, BMP2, Smad1, Smad5 and Smad8. ( F ) IHC staining of GREM1 in tumor and adjacent normal tissues. ( G ) Representative images of GREM1 expression in immunohistochemical staining. ( H ) Kaplan–Meier curves for overall survival by GREM1 expression

Article Snippet: The protein was separated, transferred, and then incubated with 5% milk for 2 h. Antibodies including GREM1 (Santa Cruz, sc-515877), TGF-β1 (Santa Cruz, sc-130348), smad23 (Santa Cruz, sc-398844), p-smad2 (ABclonal, AP1007), p-smad3 (ABclonal, AP0727), smad1 (ABclonal, A19113), smad5 (ABclonal, A22749), smad8 (Santa Cruz, sc-518051), BMP2(ABclonal, A27101 ), snail(ABclonal, A11794), E-cadherin (Proteintech, Cat No. 20874-1-AP), N-cadherin (proteintech, Cat No. 22018-1-AP), Vimentin (Santa Cruz, sc-373717), HK2 (Proteintech, Cat No. 22029-1-AP), LDHA (ABclonal, A21893), PKM2 (ABclonal, A0268), TPI1(ABclonal, A2579) and β-Actin (ABclonal, AC038) were incubated with the protein overnight at 4 °C.

Techniques: Protein-Protein interactions, Binding Assay, Immunofluorescence, Double Staining, Expressing, Control, Knockdown, Over Expression, Co-Immunoprecipitation Assay, Western Blot, Immunohistochemistry, Immunohistochemical staining, Staining