The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation
The co-chaperone HspBP1 interacts with members of the hsp70 family, but also provides chaperone-independent functions. We report here novel biological properties of HspBP1 that are relevant to the formation of cytoplasmic stress granules (SGs). SG assembly is a conserved reaction to environmental or...
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2020-03-01
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doaj-5e2dcb35764d40e7b1788a507de388eb2020-11-25T03:49:38ZengMDPI AGCells2073-44092020-03-01982582510.3390/cells9040825The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their FormationHicham Mahboubi0Ossama Moujaber1Mohamed Kodiha2Ursula Stochaj3Department of Physiology McGill University, 3655 Promenade Sir William Osler, Montreal, PQ H3G 1Y6, CanadaDepartment of Physiology McGill University, 3655 Promenade Sir William Osler, Montreal, PQ H3G 1Y6, CanadaDepartment of Physiology McGill University, 3655 Promenade Sir William Osler, Montreal, PQ H3G 1Y6, CanadaDepartment of Physiology McGill University, 3655 Promenade Sir William Osler, Montreal, PQ H3G 1Y6, CanadaThe co-chaperone HspBP1 interacts with members of the hsp70 family, but also provides chaperone-independent functions. We report here novel biological properties of HspBP1 that are relevant to the formation of cytoplasmic stress granules (SGs). SG assembly is a conserved reaction to environmental or pathological insults and part of the cellular stress response. Our study reveals that HspBP1 (1) is an integral SG constituent, and (2) a regulator of SG assembly. Oxidative stress relocates HspBP1 to SGs, where it co-localizes with granule marker proteins and polyA-RNA. Mass spectrometry and co-immunoprecipitation identified novel HspBP1-binding partners that are critical for SG biology. Specifically, HspBP1 associates with the SG proteins G3BP1, HuR and TIA-1/TIAR. HspBP1 also interacts with polyA-RNA in vivo and binds directly RNA homopolymers in vitro. Multiple lines of evidence and single-granule analyses demonstrate that HspBP1 is crucial for SG biogenesis. Thus, HspBP1 knockdown interferes with stress-induced SG assembly. By contrast, HspBP1 overexpression promotes SG formation in the absence of stress. Notably, the hsp70-binding domains of HspBP1 regulate SG production in unstressed cells. Taken together, we identified novel HspBP1 activities that control SG formation. These features expand HspBP1’s role in the cellular stress response and provide new mechanistic insights into SG biogenesis.https://www.mdpi.com/2073-4409/9/4/825HspBP1stress responsestress granulechaperoneco-chaperoneproteostasis |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hicham Mahboubi Ossama Moujaber Mohamed Kodiha Ursula Stochaj |
spellingShingle |
Hicham Mahboubi Ossama Moujaber Mohamed Kodiha Ursula Stochaj The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation Cells HspBP1 stress response stress granule chaperone co-chaperone proteostasis |
author_facet |
Hicham Mahboubi Ossama Moujaber Mohamed Kodiha Ursula Stochaj |
author_sort |
Hicham Mahboubi |
title |
The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation |
title_short |
The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation |
title_full |
The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation |
title_fullStr |
The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation |
title_full_unstemmed |
The Co-Chaperone HspBP1 Is a Novel Component of Stress Granules that Regulates Their Formation |
title_sort |
co-chaperone hspbp1 is a novel component of stress granules that regulates their formation |
publisher |
MDPI AG |
series |
Cells |
issn |
2073-4409 |
publishDate |
2020-03-01 |
description |
The co-chaperone HspBP1 interacts with members of the hsp70 family, but also provides chaperone-independent functions. We report here novel biological properties of HspBP1 that are relevant to the formation of cytoplasmic stress granules (SGs). SG assembly is a conserved reaction to environmental or pathological insults and part of the cellular stress response. Our study reveals that HspBP1 (1) is an integral SG constituent, and (2) a regulator of SG assembly. Oxidative stress relocates HspBP1 to SGs, where it co-localizes with granule marker proteins and polyA-RNA. Mass spectrometry and co-immunoprecipitation identified novel HspBP1-binding partners that are critical for SG biology. Specifically, HspBP1 associates with the SG proteins G3BP1, HuR and TIA-1/TIAR. HspBP1 also interacts with polyA-RNA in vivo and binds directly RNA homopolymers in vitro. Multiple lines of evidence and single-granule analyses demonstrate that HspBP1 is crucial for SG biogenesis. Thus, HspBP1 knockdown interferes with stress-induced SG assembly. By contrast, HspBP1 overexpression promotes SG formation in the absence of stress. Notably, the hsp70-binding domains of HspBP1 regulate SG production in unstressed cells. Taken together, we identified novel HspBP1 activities that control SG formation. These features expand HspBP1’s role in the cellular stress response and provide new mechanistic insights into SG biogenesis. |
topic |
HspBP1 stress response stress granule chaperone co-chaperone proteostasis |
url |
https://www.mdpi.com/2073-4409/9/4/825 |
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