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Binding of SGTA to Rpn13 selectively modulates protein quality control

Version 4 2024-03-12, 15:19
Version 3 2023-10-29, 11:44
journal contribution
posted on 2024-03-12, 15:19 authored by P. Leznicki, J. Korac-Prlic, K. Kliza, K. Husnjak, Yvonne Nyathi, I. Dikic, S. High

Rpn13 is an intrinsic ubiquitin receptor of the 26S proteasome regulatory subunit that facilitates substrate capture prior to degradation. Here we show that the C-terminal region of Rpn13 binds to the tetratricopeptide repeat (TPR) domain of SGTA, a cytosolic factor implicated in the quality control of mislocalised membrane proteins (MLPs). The overexpression of SGTA results in a substantial increase in steady-state MLP levels, consistent with an effect on proteasomal degradation. However, this effect is strongly dependent upon the interaction of SGTA with the proteasomal component Rpn13. Hence, overexpression of the SGTA-binding region of Rpn13 or point mutations within the SGTA TPR domain both inhibit SGTA binding to the proteasome and substantially reduce MLP levels. These findings suggest that SGTA can regulate the access of MLPs to the proteolytic core of the proteasome, implying that a protein quality control cycle that involves SGTA and the BAG6 complex can operate at the 19S regulatory particle. We speculate that the binding of SGTA to Rpn13 enables specific polypeptides to escape proteasomal degradation and/or selectively modulates substrate degradation.

History

School affiliated with

  • Department of Life Sciences (Research Outputs)

Publication Title

Journal of Cell Science

Volume

128

Issue

17

Pages/Article Number

3187-3196

Publisher

Company of Biologists

ISSN

0021-9533

eISSN

1477-9137

Date Submitted

2017-06-21

Date Accepted

2015-07-03

Date of First Publication

2015-09-13

Date of Final Publication

2015-09-13

Date Document First Uploaded

2017-06-19

ePrints ID

27025

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