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Methods in Molecular Biology (Clifton, N.J.)|September 16, 2016
The Regulation of Chromatin by Dynamic SUMO ModificationsNicole R Wilson, Mark HochstrasserMethods in Molecular Biology (Clifton, N.J.)|December 25, 2008
Identification of SUMO-interacting proteins by yeast two-hybrid analysisMary B Kroetz, Mark HochstrasserBiological Chemistry|August 21, 2008
Some assembly required: dedicated chaperones in eukaryotic proteasome biogenesisAndrew R Kusmierczyk, Mark HochstrasserSeminars in Cell & Developmental Biology|October 3, 2018
Ubiquitin-dependent protein degradation at the endoplasmic reticulum and nuclear envelopeAdrian B Mehrtash, Mark HochstrasserNucleic Acids Research|April 22, 2021
Histone sumoylation and chromatin dynamicsHong-Yeoul Ryu, Mark HochstrasserMolecular Cell|January 14, 2014
The intrinsically disordered Sem1 protein functions as a molecular tether during proteasome lid biogenesisRobert J Tomko, Mark HochstrasserBiochemical Society Transactions|October 22, 2025
Deubiquitylases and nucleases in bacterial symbiont-induced cytoplasmic incompatibilitySeun O Oladipupo, Mark HochstrasserGenes & Development|September 4, 2003
Ubiquitin-dependent degradation of the yeast Mat(alpha)2 repressor enables a switch in developmental stateJeffrey D Laney, Mark HochstrasserBiomolecules|December 24, 2021
Ubiquitin Ligase Redundancy and Nuclear-Cytoplasmic Localization in Yeast Protein Quality ControlCarolyn Allain Breckel, Mark HochstrasserIscience|November 3, 2022
Elements of the ERAD ubiquitin ligase Doa10 regulating sequential poly-ubiquitylation of its targetsAdrian B Mehrtash, Mark HochstrasserPageof 13