Dipeptidyl peptidases and E3 ligases of N-degron pathways cooperate to regulate protein stability

Author:

Shimshon Adi1ORCID,Dahan Karin1ORCID,Israel-Gueta Mor1ORCID,Olmayev-Yaakobov Diana1ORCID,Timms Richard T.2ORCID,Bekturova Aizat1ORCID,Makaros Yaara1ORCID,Elledge Stephen J.3ORCID,Koren Itay1ORCID

Affiliation:

1. Bar-Ilan University 1 The Mina and Everard Goodman Faculty of Life Sciences, , Ramat-Gan, Israel

2. Cambridge Institute of Therapeutic Immunology and Infectious Disease, Jeffrey Cheah Biomedical Centre 2 , Cambridge, UK

3. Howard Hughes Medical Institute 3 Department of Genetics, Harvard Medical School, Brigham and Women’s Hospital, , Boston, MA, USA

Abstract

N-degrons are short sequences located at protein N-terminus that mediate the interaction of E3 ligases (E3s) with substrates to promote their proteolysis. It is well established that N-degrons can be exposed following protease cleavage to allow recognition by E3s. However, our knowledge regarding how proteases and E3s cooperate in protein quality control mechanisms remains minimal. Using a systematic approach to monitor the protein stability of an N-terminome library, we found that proline residue at the third N-terminal position (hereafter “P+3”) promotes instability. Genetic perturbations identified the dipeptidyl peptidases DPP8 and DPP9 and the primary E3s of N-degron pathways, UBR proteins, as regulators of P+3 bearing substrate turnover. Interestingly, P+3 UBR substrates are significantly enriched for secretory proteins. We found that secretory proteins relying on a signal peptide (SP) for their targeting contain a “built-in” N-degron within their SP. This degron becomes exposed by DPP8/9 upon translocation failure to the designated compartments, thus enabling clearance of mislocalized proteins by UBRs to maintain proteostasis.

Funder

United States-Israel Binational Science Foundation

European Research Council

Howard Hughes Medical Institute

Publisher

Rockefeller University Press

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. N-degron pathways;Proceedings of the National Academy of Sciences;2024-09-12

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