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Promega goscripttm reverse transcriptase
Goscripttm Reverse Transcriptase, supplied by Promega, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/5x+goscripttm+buffer/goscripttm+reverse+transcriptase/pm32781964-107-17-46
Average 90 stars, based on 1 article reviews
goscripttm reverse transcriptase - by Bioz Stars, 2026-09
90/100 stars

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Reverse Transcription:

Article Title: NXT2 is a key component of the RNA nuclear export factor complex in the human testis and essential for spermatogenesis.
Article Snippet: .. Human adult testis RNA (BioCat, Heidelberg, Germany) was converted to cDNA using the GoScriptTM Reverse Transcriptase system (Promega, Madison, USA) according to the instructions of the manufacturer. .. Amplification of human cDNAs encompassing the entire open reading frame of NXT2 (NM_018698.5), NXF2 (NM_022053.4) NXF3 (NM_022052.2) and NXT1 (NM_013248.3) was performed with PrimeSTAR Max polymerase (Takara Bio, Kusatsu, Japan) and PCR products were cloned into the mammalian expression vector pcDNA3.1(+) (Genscript, Leiden, NL).

Article Title: Comparative study of CYP450 gene regulation in human pluripotent stem cell-derived liver 2D cell and 3D organoid models.
Article Snippet: Human pluripotent stem cell (hPSC)-derived hepatic models, including 2D hepatocyte-like cells (2D HLCs) and hepatic organoids (HOs), are valuable in vitro models for evaluating the safety and efficacy of drugs.. However, 2D HLCs show limited expression and activity of drug-metabolizing enzymes, particularly cytochrome P450 (CYP450), which are involved in detoxification, a major liver function.. HOs have more mature properties than 2D HLCs, particularly enhanced CYP450 gene expression.

Article Title: Virus infection using pharmaceutical composition comprising immunoglobulin Fc-fused interleukin-7 fusion protein
Article Snippet: .. After preparation of lung homogenate, mRNAs were prepared with a ReliaprepTM mRNA preparation kit (Promega, Fitchburg, WI, USA), and cDNAs were synthesized with GoScriptTM Reverse Transcriptase System (Promega) according to the manufacturer's protocol. .. Quantitative PCR assay was performed using Power SYBR Green Master Mix (Applied Biosystems, Foster City, CA).

Article Title: Synthetic homoisoflavane derivatives suppress the growth of colorectal cancer cells by disturbing microtubule dynamics.
Article Snippet: Microtubules, composed of tubulin proteins, have a crucial role in various cellular processes, including cell cycle regulation.. The dynamic instability of microtubules has been an attractive target for cancer therapy.. This study investigated two potent anticancer drug candidates, homoisoflavane derivatives SH-19021 and SHA-035, and evaluated their potential as microtubule-targeting agents (MTAs) in human colorectal cancer cells.

Article Title: Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis.
Article Snippet: Total RNA was extracted from PBMCs using a RiboPureTM RNA Purification Kit (Invitrogen, Waltham, MA, USA). .. Subsequently, according to the manufacturer’s instructions, 100 ng of total RNA was reverse-transcribed using GoScriptTM Reverse Transcriptase (Promega, Madison, WI, USA), yielding cDNA at a final concentration of 20 ng/μL. .. Genomic DNA was isolated from whole blood using a PureLinkTM Genomic DNA Mini Kit (Invitrogen, Waltham, MA, USA).

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.

Article Title: The renoprotective effects of tadalafil on ischemia-reperfusion injury during partial nephrectomy in an animal model.
Article Snippet: RNA was extracted using a Maxwell® RSC simply RNA Cells Kit and a MaxwellTM instrument (Promega, Madison, WI, USA). .. After RNA quantification, RNA (1 ug) was reversed transcribed into cDNA using GoScriptTM Reverse Transcriptase (Promega, Madison, WI, USA). .. A StepOnePlusTM Real-Time PCR System (Applied Biosystems® Inc., Foster City, CA, USA) was used for quantitative real-time PCR using the primers in Table 2 and the following program: initial denaturation at 95 °C for one minute, followed by 38 cycles of denaturation at 95 °C for three seconds and combined annealing/extension at 60 °C for 30 s. Fold-change gene expression was calculated using the 2^-ΔΔCt method and GAPDH as the reference gene.

Article Title: Polyester artificial ligament modified with a polyphenol-zinc layer for controlled and targeted release of ciprofloxacin
Article Snippet: .. Isolated RNA was reverse transcribed into complementary DNA (cDNA) using GoScriptTM Reverse Transcriptase (Promega, USA). .. Quantitative PCR (qPCR) was performed using GoTaq® Probe qPCR Master Mix (Promega, USA) with specific primers and probes for IL-6, IL-10, IL-1β, and IFN-β.

Synthesized:

Article Title: Virus infection using pharmaceutical composition comprising immunoglobulin Fc-fused interleukin-7 fusion protein
Article Snippet: .. After preparation of lung homogenate, mRNAs were prepared with a ReliaprepTM mRNA preparation kit (Promega, Fitchburg, WI, USA), and cDNAs were synthesized with GoScriptTM Reverse Transcriptase System (Promega) according to the manufacturer's protocol. .. Quantitative PCR assay was performed using Power SYBR Green Master Mix (Applied Biosystems, Foster City, CA).

Isolation:

Article Title: Synthetic homoisoflavane derivatives suppress the growth of colorectal cancer cells by disturbing microtubule dynamics.
Article Snippet: Microtubules, composed of tubulin proteins, have a crucial role in various cellular processes, including cell cycle regulation.. The dynamic instability of microtubules has been an attractive target for cancer therapy.. This study investigated two potent anticancer drug candidates, homoisoflavane derivatives SH-19021 and SHA-035, and evaluated their potential as microtubule-targeting agents (MTAs) in human colorectal cancer cells.

Article Title: Polyester artificial ligament modified with a polyphenol-zinc layer for controlled and targeted release of ciprofloxacin
Article Snippet: .. Isolated RNA was reverse transcribed into complementary DNA (cDNA) using GoScriptTM Reverse Transcriptase (Promega, USA). .. Quantitative PCR (qPCR) was performed using GoTaq® Probe qPCR Master Mix (Promega, USA) with specific primers and probes for IL-6, IL-10, IL-1β, and IFN-β.

Expressing:

Article Title: Synthetic homoisoflavane derivatives suppress the growth of colorectal cancer cells by disturbing microtubule dynamics.
Article Snippet: Microtubules, composed of tubulin proteins, have a crucial role in various cellular processes, including cell cycle regulation.. The dynamic instability of microtubules has been an attractive target for cancer therapy.. This study investigated two potent anticancer drug candidates, homoisoflavane derivatives SH-19021 and SHA-035, and evaluated their potential as microtubule-targeting agents (MTAs) in human colorectal cancer cells.

Real-time Polymerase Chain Reaction:

Article Title: Synthetic homoisoflavane derivatives suppress the growth of colorectal cancer cells by disturbing microtubule dynamics.
Article Snippet: Microtubules, composed of tubulin proteins, have a crucial role in various cellular processes, including cell cycle regulation.. The dynamic instability of microtubules has been an attractive target for cancer therapy.. This study investigated two potent anticancer drug candidates, homoisoflavane derivatives SH-19021 and SHA-035, and evaluated their potential as microtubule-targeting agents (MTAs) in human colorectal cancer cells.

Concentration Assay:

Article Title: Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis.
Article Snippet: Total RNA was extracted from PBMCs using a RiboPureTM RNA Purification Kit (Invitrogen, Waltham, MA, USA). .. Subsequently, according to the manufacturer’s instructions, 100 ng of total RNA was reverse-transcribed using GoScriptTM Reverse Transcriptase (Promega, Madison, WI, USA), yielding cDNA at a final concentration of 20 ng/μL. .. Genomic DNA was isolated from whole blood using a PureLinkTM Genomic DNA Mini Kit (Invitrogen, Waltham, MA, USA).

Proliferation Assay:

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.

In Situ:

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.

Proximity Ligation Assay:

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.

Mutagenesis:

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.

Mass Spectrometry:

Article Title: Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer.
Article Snippet: Article Isoform-specific function of NSD3 in DNA replication stress confers resistance to PARP inhibitors in prostate cancer Graphical abstract Highlights • NSD3S, but not NSD3L, contributes to the resistance of prostate cancer to PARPi • The CUL3ZBTB2 E3 ubiquitin ligase complex specifically targets NSD3S for degradation • NSD3S protects against MRE11-mediated degradation of the stalled replication fork • NSD3 PROTAC enhances the sensitivity of prostate cancer to PARPi Authors Shouhai Zhu, Huanyao Gao, Dan Jiang, ..., Xinyi Tu, Liewei Wang, Zhenkun Lou Correspondence tu.xinyi@mayo.edu (X.T.), wang.liewei@mayo.edu (L.W.), lou.zhenkun@mayo.edu (Z.L.). In brief In this study, Zhu et al. demonstrate that upregulated NSD3S confers acquired PARPi resistance in prostate cancer cells.. ATR drives the localization of NSD3S to stalled replication forks, where it protects nascent DNA from extensive degradation and ensures fork stabilization by antagonizing PTIP-dependent recruitment of the MRE11 nuclease.



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