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Therapeutic genetic variation revealed in diverse Hsp104 homologs

Authors :
Robert Jedrzejczak
Hanna Kim
Meredith E. Jackrel
Edward Chuang
James Shorter
Katelyn Sweeney
JiaBei Lin
Kim A. Caldwell
Corey W Willicott
Xiaohui Yan
Laura M. Castellano
Ophir Shalem
Andrzej Joachimiak
Karolina Michalska
Guy A. Caldwell
Zachary M. March
Edward Gomes
Source :
eLife, eLife, Vol 9 (2020)
Publication Year :
2020
Publisher :
eLife Sciences Publications, Ltd, 2020.

Abstract

The AAA+ protein disaggregase, Hsp104, increases fitness under stress by reversing stress-induced protein aggregation. Natural Hsp104 variants might exist with enhanced, selective activity against neurodegenerative disease substrates. However, natural Hsp104 variation remains largely unexplored. Here, we screened a cross-kingdom collection of Hsp104 homologs in yeast proteotoxicity models. Prokaryotic ClpG reduced TDP-43, FUS, and α-synuclein toxicity, whereas prokaryotic ClpB and hyperactive variants were ineffective. We uncovered therapeutic genetic variation among eukaryotic Hsp104 homologs that specifically antagonized TDP-43 condensation and toxicity in yeast and TDP-43 aggregation in human cells. We also uncovered distinct eukaryotic Hsp104 homologs that selectively antagonized α-synuclein condensation and toxicity in yeast and dopaminergic neurodegeneration inC. elegans. Surprisingly, this therapeutic variation did not manifest as enhanced disaggregase activity, but rather as increased passive inhibition of aggregation of specific substrates. By exploring natural tuning of this passive Hsp104 activity, we elucidated enhanced, substrate-specific agents that counter proteotoxicity underlying neurodegeneration.

Details

ISSN :
2050084X
Volume :
9
Database :
OpenAIRE
Journal :
eLife
Accession number :
edsair.doi.dedup.....2e83c5d14b29bccf3099a15e10ea59df