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Enzyme reversal to explore the function of yeast E3 ubiquitin‐ligases
Authors:Chris MacDonald  Stanley Winistorfer  Robert M. Pope  Michael E. Wright  Robert C. Piper
Affiliation:1. Molecular Physiology and Biophysics, University of Iowa, Iowa City, Iowa;2. Proteomics Facility, University of Iowa, Iowa City, Iowa
Abstract:
The covalent attachment of ubiquitin onto proteins can elicit a variety of downstream consequences. Attachment is mediated by a large array of E3 ubiquitin ligases, each thought be subject to regulatory control and to have a specific repertoire of substrates. Assessing the biological roles of ligases, and in particular, identifying their biologically relevant substrates has been a persistent yet challenging question. In this study, we describe tools that may help achieve both of these goals. We describe a strategy whereby the activity of a ubiquitin ligase has been enzymatically reversed, accomplished by fusing it to a catalytic domain of an exogenous deubiquitinating enzyme. We present a library of 72 “anti‐ligases” that appear to work in a dominant‐negative fashion to stabilize their cognate substrates against ubiquitin‐dependent proteasomal and lysosomal degradation. We then used the ligase‐deubiquitinating enzyme (DUb) library to screen for E3 ligases involved in post‐Golgi/endosomal trafficking. We identify ligases previously implicated in these pathways (Rsp5 and Tul1), in addition to ligases previously localized to endosomes (Pib1 and Vps8). We also document an optimized workflow for isolating and analyzing the “ubiquitome” of yeast, which can be used with mass spectrometry to identify substrates perturbed by expression of particular ligase‐DUb fusions. image
Keywords:E3 ubiquitin ligase  endosomal trafficking  ER‐associated degradation (ERAD)  lysosome  mass spectrometry  proteasome  ubiquitin  ubiquitination  vacuolar protein sorting
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