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Fine-tuning of the Hsc70-based Human Protein Disaggregase Machinery by the Distinctive C-terminal Extension of Apg2

Authors :
Yovana Cabrera
Ganeko Bernardo-Seisdedos
Leire Dublang
David Albesa-Jové
Natalia Orozco
Ana Rosa Viguera
Oscar Millet
Arturo Muga
Fernando Moro
Universidad del País Vasco
Ministerio de Educación y Ciencia (España)
Fundación Biofísica Bizkaia
Ministerio de Economía y Competitividad (España)
Eusko Jaurlaritza
Fundación BBVA
Ministerio de Ciencia, Innovación y Universidades (España)
Agencia Estatal de Investigación (España)
Source :
Journal of molecular biology. 434(22)
Publication Year :
2022

Abstract

Apg2, one of the three cytosolic Hsp110 chaperones in humans, supports reactivation of unordered and ordered protein aggregates by Hsc70 (HspA8). Together with DnaJB1, Apg2 serves to nucleate Hsc70 molecules into sites where productive entropic pulling forces can be developed. During aggregate reactivation, Apg2 performs as a specialized nucleotide exchange factor, but the origin of its specialization is poorly defined. Here we report on the role of the distinctive C-terminal extension present in Apg2 and other metazoan homologs. We found that the first part of this Apg2 subdomain, with propensity to adopt α-helical structure, interacts with the nucleotide binding domain of Hsc70 in a nucleotide-dependent manner, contributing significantly to the stability of the Hsc70:Apg2 complex. Moreover, the second intrinsically disordered segment of Apg2 C-terminal extension plays an important role as a downregulator of nucleotide exchange. An NMR analysis showed that the interaction with Hsc70 nucleotide binding domain modifies the chemical environment of residues located in important functional sites such as the interface between lobe I and II and the nucleotide binding site. Our data indicate that Apg2 C-terminal extension is a fine-tuner of human Hsc70 activity that optimizes the substrate remodeling ability of the chaperone system.<br />C. and L.D. were recipients of UPV/EHU and MEC FPU predoctoral fellowships, respectively. We thank Fundación Biofisika Bizkaia for supporting N.O. This work was supported by CTQ2016-76941-R (MINECO), Fundación Biofísica Bizkaia, the Basque Excellence Research Centre (BERC) of the Basque Government and Fundación BBVA to D.A.-J., and BFU2016-75983-P and PID2019-111068 GB-100 (MCI/AEI/FEDER, UE) grants from Spanish Government to A.M. and F.M. and IT1745-22 from Basque Government to F.M.

Details

ISSN :
10898638
Volume :
434
Issue :
22
Database :
OpenAIRE
Journal :
Journal of molecular biology
Accession number :
edsair.doi.dedup.....f9fec813633b8563d076faa84b6f6930