Conserved degronome features governing quality control associated proteolysis.

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Bibliographic Details
Title: Conserved degronome features governing quality control associated proteolysis.
Authors: Mashahreh, Bayan, Armony, Shir, Enøe Johansson, Kristoffer, Chappleboim, Alon, Friedman, Nir, Gardner, Richard G., Hartmann-Petersen, Rasmus, Lindorff-Larsen, Kresten, Ravid, Tommer
Source: Nature Communications; 12/8/2022, Vol. 13 Issue 1, p1-13, 13p, 1 Chart, 6 Graphs
Abstract: The eukaryotic proteome undergoes constant surveillance by quality control systems that either sequester, refold, or eliminate aberrant proteins by ubiquitin-dependent mechanisms. Ubiquitin-conjugation necessitates the recognition of degradation determinants, termed degrons, by their cognate E3 ubiquitin-protein ligases. To learn about the distinctive properties of quality control degrons, we performed an unbiased peptidome stability screen in yeast. The search identify a large cohort of proteome-derived degrons, some of which exhibited broad E3 ligase specificity. Consequent application of a machine-learning algorithm establishes constraints governing degron potency, including the amino acid composition and secondary structure propensities. According to the set criteria, degrons with transmembrane domain-like characteristics are the most probable sequences to act as degrons. Similar quality control degrons are present in viral and human proteins, suggesting conserved degradation mechanisms. Altogether, the emerging data indicate that transmembrane domain-like degron features have been preserved in evolution as key quality control determinants of protein half-life. [ABSTRACT FROM AUTHOR]
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Database: Complementary Index
Description
Abstract:The eukaryotic proteome undergoes constant surveillance by quality control systems that either sequester, refold, or eliminate aberrant proteins by ubiquitin-dependent mechanisms. Ubiquitin-conjugation necessitates the recognition of degradation determinants, termed degrons, by their cognate E3 ubiquitin-protein ligases. To learn about the distinctive properties of quality control degrons, we performed an unbiased peptidome stability screen in yeast. The search identify a large cohort of proteome-derived degrons, some of which exhibited broad E3 ligase specificity. Consequent application of a machine-learning algorithm establishes constraints governing degron potency, including the amino acid composition and secondary structure propensities. According to the set criteria, degrons with transmembrane domain-like characteristics are the most probable sequences to act as degrons. Similar quality control degrons are present in viral and human proteins, suggesting conserved degradation mechanisms. Altogether, the emerging data indicate that transmembrane domain-like degron features have been preserved in evolution as key quality control determinants of protein half-life. [ABSTRACT FROM AUTHOR]
ISSN:20411723
DOI:10.1038/s41467-022-35298-y