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Yu-shin Sou

Showing results (21-30 of 31) with videos related to

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The Journal of Biological Chemistry|July 23, 2014
Proteasome dysfunction activates autophagy and the Keap1-Nrf2 pathwayShun Kageyama, Yu-shin Sou, Takefumi Uemura, et al.
Life Science Alliance|December 28, 2019
Loss of autophagy impairs physiological steatosis by accumulation of NCoR1Shun-Saku Takahashi, Yu-Shin Sou, Tetsuya Saito, et al.
Nature Microbiology|May 9, 2017
Linear ubiquitination of cytosolic Salmonella Typhimurium activates NF-κB and restricts bacterial proliferationSjoerd J L van Wijk, Franziska Fricke, Lina Herhaus, et al.
Nature Communications|January 21, 2015
The unexpected role of polyubiquitin chains in the formation of fibrillar aggregatesDaichi Morimoto, Erik Walinda, Harumi Fukada, et al.
Nature Cell Biology|February 23, 2010
The selective autophagy substrate p62 activates the stress responsive transcription factor Nrf2 through inactivation of Keap1Masaaki Komatsu, Hirofumi Kurokawa, Satoshi Waguri, et al.
Molecular Cell|March 3, 2009
A role for NBR1 in autophagosomal degradation of ubiquitinated substratesVladimir Kirkin, Trond Lamark, Yu-Shin Sou, et al.
Molecular Cell|September 10, 2013
Phosphorylation of p62 activates the Keap1-Nrf2 pathway during selective autophagyYoshinobu Ichimura, Satoshi Waguri, Yu-Shin Sou, et al.
The EMBO Journal|May 5, 2026
Phosphorylation tunes p62 condensates to drive autophagic degradation of ubiquitinated proteinsSatoko Komatsu-Hirota, Keisuke Tabata, Yu-Shin Sou, et al.
Molecular Cell|September 16, 2014
Modification of ASC1 by UFM1 is crucial for ERα transactivation and breast cancer developmentHee Min Yoo, Sung Hwan Kang, Jae Yeon Kim, et al.
Nature Communications|January 5, 2021
p62/SQSTM1-droplet serves as a platform for autophagosome formation and anti-oxidative stress responseShun Kageyama, Sigurdur Runar Gudmundsson, Yu-Shin Sou, et al.
Pageof 4

Showing results (21-30 of 31) with videos related to

Sort By:
Pageof 4
The Journal of Biological Chemistry|July 23, 2014
Proteasome dysfunction activates autophagy and the Keap1-Nrf2 pathwayShun Kageyama, Yu-shin Sou, Takefumi Uemura, et al.
Life Science Alliance|December 28, 2019
Loss of autophagy impairs physiological steatosis by accumulation of NCoR1Shun-Saku Takahashi, Yu-Shin Sou, Tetsuya Saito, et al.
Nature Microbiology|May 9, 2017
Linear ubiquitination of cytosolic Salmonella Typhimurium activates NF-κB and restricts bacterial proliferationSjoerd J L van Wijk, Franziska Fricke, Lina Herhaus, et al.
Nature Communications|January 21, 2015
The unexpected role of polyubiquitin chains in the formation of fibrillar aggregatesDaichi Morimoto, Erik Walinda, Harumi Fukada, et al.
Nature Cell Biology|February 23, 2010
The selective autophagy substrate p62 activates the stress responsive transcription factor Nrf2 through inactivation of Keap1Masaaki Komatsu, Hirofumi Kurokawa, Satoshi Waguri, et al.
Molecular Cell|March 3, 2009
A role for NBR1 in autophagosomal degradation of ubiquitinated substratesVladimir Kirkin, Trond Lamark, Yu-Shin Sou, et al.
Molecular Cell|September 10, 2013
Phosphorylation of p62 activates the Keap1-Nrf2 pathway during selective autophagyYoshinobu Ichimura, Satoshi Waguri, Yu-Shin Sou, et al.
The EMBO Journal|May 5, 2026
Phosphorylation tunes p62 condensates to drive autophagic degradation of ubiquitinated proteinsSatoko Komatsu-Hirota, Keisuke Tabata, Yu-Shin Sou, et al.
Molecular Cell|September 16, 2014
Modification of ASC1 by UFM1 is crucial for ERα transactivation and breast cancer developmentHee Min Yoo, Sung Hwan Kang, Jae Yeon Kim, et al.
Nature Communications|January 5, 2021
p62/SQSTM1-droplet serves as a platform for autophagosome formation and anti-oxidative stress responseShun Kageyama, Sigurdur Runar Gudmundsson, Yu-Shin Sou, et al.
Pageof 4