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Xiang-Dong Fu

Showing results (91-100 of 214) with videos related to

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Genes & Development|October 8, 2015
Widespread JNK-dependent alternative splicing induces a positive feedback loop through CELF2-mediated regulation of MKK7 during T-cell activationNicole M Martinez, Laura Agosto, Jinsong Qiu, et al.
Nature Communications|February 26, 2022
Transcriptional repression of estrogen receptor alpha by YAP reveals the Hippo pathway as therapeutic target for ER<sup>+</sup> breast cancerShenghong Ma, Tracy Tang, Gary Probst, et al.
Cell|May 14, 2013
SR proteins collaborate with 7SK and promoter-associated nascent RNA to release paused polymeraseXiong Ji, Yu Zhou, Shatakshi Pandit, et al.
Molecular Cell|July 12, 2016
Release of SR Proteins from CLK1 by SRPK1: A Symbiotic Kinase System for Phosphorylation Control of Pre-mRNA SplicingBrandon E Aubol, Guowei Wu, Malik M Keshwani, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 29, 2020
Cockayne syndrome B protein acts as an ATP-dependent processivity factor that helps RNA polymerase II overcome nucleosome barriersJun Xu, Wei Wang, Liang Xu, et al.
Molecular Biology of the Cell|December 2, 2005
Regulated cellular partitioning of SR protein-specific kinases in mammalian cellsJian-Hua Ding, Xiang-Yang Zhong, Jonathan C Hagopian, et al.
Genes & Development|November 22, 2015
Context-dependent modulation of Pol II CTD phosphatase SSUP-72 regulates alternative polyadenylation in neuronal developmentFei Chen, Yu Zhou, Yingchuan B Qi, et al.
The FEBS Journal|March 5, 2011
A structured RNA in hepatitis B virus post-transcriptional regulatory element represses alternative splicing in a sequence-independent and position-dependent mannerChen Huang, Mao-Hua Xie, Wei Liu, et al.
Structure (London, England : 1993)|January 16, 2007
SR protein kinase 1 is resilient to inactivationJacky Chi Ki Ngo, Justin Gullingsrud, Kayla Giang, et al.
Genes & Development|December 3, 2014
Pre-mRNA splicing is facilitated by an optimal RNA polymerase II elongation rateNova Fong, Hyunmin Kim, Yu Zhou, et al.
Pageof 22

Showing results (91-100 of 214) with videos related to

Sort By:
Pageof 22
Genes & Development|October 8, 2015
Widespread JNK-dependent alternative splicing induces a positive feedback loop through CELF2-mediated regulation of MKK7 during T-cell activationNicole M Martinez, Laura Agosto, Jinsong Qiu, et al.
Nature Communications|February 26, 2022
Transcriptional repression of estrogen receptor alpha by YAP reveals the Hippo pathway as therapeutic target for ER<sup>+</sup> breast cancerShenghong Ma, Tracy Tang, Gary Probst, et al.
Cell|May 14, 2013
SR proteins collaborate with 7SK and promoter-associated nascent RNA to release paused polymeraseXiong Ji, Yu Zhou, Shatakshi Pandit, et al.
Molecular Cell|July 12, 2016
Release of SR Proteins from CLK1 by SRPK1: A Symbiotic Kinase System for Phosphorylation Control of Pre-mRNA SplicingBrandon E Aubol, Guowei Wu, Malik M Keshwani, et al.
Proceedings of the National Academy of Sciences of the United States of America|September 29, 2020
Cockayne syndrome B protein acts as an ATP-dependent processivity factor that helps RNA polymerase II overcome nucleosome barriersJun Xu, Wei Wang, Liang Xu, et al.
Molecular Biology of the Cell|December 2, 2005
Regulated cellular partitioning of SR protein-specific kinases in mammalian cellsJian-Hua Ding, Xiang-Yang Zhong, Jonathan C Hagopian, et al.
Genes & Development|November 22, 2015
Context-dependent modulation of Pol II CTD phosphatase SSUP-72 regulates alternative polyadenylation in neuronal developmentFei Chen, Yu Zhou, Yingchuan B Qi, et al.
The FEBS Journal|March 5, 2011
A structured RNA in hepatitis B virus post-transcriptional regulatory element represses alternative splicing in a sequence-independent and position-dependent mannerChen Huang, Mao-Hua Xie, Wei Liu, et al.
Structure (London, England : 1993)|January 16, 2007
SR protein kinase 1 is resilient to inactivationJacky Chi Ki Ngo, Justin Gullingsrud, Kayla Giang, et al.
Genes & Development|December 3, 2014
Pre-mRNA splicing is facilitated by an optimal RNA polymerase II elongation rateNova Fong, Hyunmin Kim, Yu Zhou, et al.
Pageof 22