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Mark Hochstrasser

Showing results (71-80 of 141) with videos related to

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Molecular Biology of the Cell|February 20, 2009
Essential role of nuclear localization for yeast Ulp2 SUMO protease functionMary B Kroetz, Dan Su, Mark Hochstrasser
Cell Research|March 26, 2016
Substrate specificity of the ubiquitin and Ubl proteasesJudith A Ronau, John F Beckmann, Mark Hochstrasser
Molecular and Cellular Biology|December 16, 2005
The short-lived Matalpha2 transcriptional repressor is protected from degradation in vivo by interactions with its corepressors Tup1 and Ssn6Jeffrey D Laney, Erika F Mobley, Mark Hochstrasser
Mbio|January 25, 2022
The CinB Nuclease from <i>w</i>No <i>Wolbachia</i> Is Sufficient for Induction of Cytoplasmic Incompatibility in <i>Drosophila</i>Guangxin Sun, Mengwen Zhang, Hongli Chen, et al.
Molecular Biology of the Cell|August 4, 2021
Yeast Nst1 is a novel component of P-bodies and is a specific suppressor of proteasome base assembly defectsChin Leng Cheng, Michael K Wong, Mark Hochstrasser
Cell Reports|March 22, 2016
Assembly of an Evolutionarily Conserved Alternative Proteasome Isoform in Human CellsAchuth Padmanabhan, Simone Anh-Thu Vuong, Mark Hochstrasser
Nature Microbiology|March 2, 2017
A Wolbachia deubiquitylating enzyme induces cytoplasmic incompatibilityJohn F Beckmann, Judith A Ronau, Mark Hochstrasser
Experimental & Molecular Medicine|June 28, 2020
SUMO and cellular adaptive mechanismsHong-Yeoul Ryu, Seong Hoon Ahn, Mark Hochstrasser
Biorxiv : the Preprint Server for Biology|July 9, 2025
AMPK alters proteasome phosphorylation status and prevents persistent proteasome condensatesJianhui Li, Conner Butcher, Kyle VanderVen, et al.
Nature Reviews. Molecular Cell Biology|November 24, 2012
Function and regulation of SUMO proteasesChristopher M Hickey, Nicole R Wilson, Mark Hochstrasser
Pageof 15

Showing results (71-80 of 141) with videos related to

Sort By:
Pageof 15
Molecular Biology of the Cell|February 20, 2009
Essential role of nuclear localization for yeast Ulp2 SUMO protease functionMary B Kroetz, Dan Su, Mark Hochstrasser
Cell Research|March 26, 2016
Substrate specificity of the ubiquitin and Ubl proteasesJudith A Ronau, John F Beckmann, Mark Hochstrasser
Molecular and Cellular Biology|December 16, 2005
The short-lived Matalpha2 transcriptional repressor is protected from degradation in vivo by interactions with its corepressors Tup1 and Ssn6Jeffrey D Laney, Erika F Mobley, Mark Hochstrasser
Mbio|January 25, 2022
The CinB Nuclease from <i>w</i>No <i>Wolbachia</i> Is Sufficient for Induction of Cytoplasmic Incompatibility in <i>Drosophila</i>Guangxin Sun, Mengwen Zhang, Hongli Chen, et al.
Molecular Biology of the Cell|August 4, 2021
Yeast Nst1 is a novel component of P-bodies and is a specific suppressor of proteasome base assembly defectsChin Leng Cheng, Michael K Wong, Mark Hochstrasser
Cell Reports|March 22, 2016
Assembly of an Evolutionarily Conserved Alternative Proteasome Isoform in Human CellsAchuth Padmanabhan, Simone Anh-Thu Vuong, Mark Hochstrasser
Nature Microbiology|March 2, 2017
A Wolbachia deubiquitylating enzyme induces cytoplasmic incompatibilityJohn F Beckmann, Judith A Ronau, Mark Hochstrasser
Experimental & Molecular Medicine|June 28, 2020
SUMO and cellular adaptive mechanismsHong-Yeoul Ryu, Seong Hoon Ahn, Mark Hochstrasser
Biorxiv : the Preprint Server for Biology|July 9, 2025
AMPK alters proteasome phosphorylation status and prevents persistent proteasome condensatesJianhui Li, Conner Butcher, Kyle VanderVen, et al.
Nature Reviews. Molecular Cell Biology|November 24, 2012
Function and regulation of SUMO proteasesChristopher M Hickey, Nicole R Wilson, Mark Hochstrasser
Pageof 15