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Active Protein Neddylation or Ubiquitylation Is Dispensable for Stress Granule Dynamics.

Cell reports · 2019 · Vol. 27 (5) · pp. 1356-1363.e3

Abstract

Stress granule (SG) formation is frequently accompanied by ubiquitin proteasome system (UPS) impairment and ubiquitylated protein accumulation. SGs, ubiquitin, and UPS components co-localize, but the relationship between the ubiquitin pathway and SGs has not been systematically characterized. We utilize pharmacological inhibition of either the ubiquitin- or NEDD8-activating enzyme (UAE or NAE) to probe whether active ubiquitylation or neddylation modulate SG dynamics. We show that UAE inhibition results in rapid loss of global protein ubiquitylation using ubiquitin-specific proteomics. Critically, inhibiting neither UAE nor NAE significantly affected SG formation or disassembly, indicating that active protein ubiquitylation or neddylation is dispensable for SG dynamics. Using antibodies with varying preference for free ubiquitin or polyubiquitin and fluorescently tagged ubiquitin variants in combination with UAE inhibition, we show that SGs co-localize primarily with unconjugated ubiquitin rather than polyubiquitylated proteins. These findings clarify the role of ubiquitin in SG biology and suggest that free ubiquitin may alter SG protein interactions.

Publication Types

["Journal Article", "Research Support, N.I.H., Extramural", "Research Support, Non-U.S. Gov't"]

Keywords

MeSH Terms

["Cytoplasmic Granules", "HCT116 Cells", "HEK293 Cells", "HeLa Cells", "Humans", "NEDD8 Protein", "Proteasome Endopeptidase Complex", "Stress, Physiological", "Ubiquitin-Activating Enzymes", "Ubiquitination"]

Funding

R01 HG004659 NHGRI NIH HHS (United States)
R01 NS103172 NINDS NIH HHS (United States)
DP2 GM119132 NIGMS NIH HHS (United States)
R01 GM127681 NIGMS NIH HHS (United States)

Potentially Related Datasets (1)

These accessions were text-mined from the PMC full text. They may be referenced for comparison, cited from other studies, or otherwise mentioned without being primary data for this paper.

MSV000082933 MASSIVE MassIVE