Protein C-terminal variations impact proteostasis.

Chu, Ching-Yu; Hsu, Shu-Yu; Yeh, Chi-Wei; Yeh, Kun-Hai; Wang, Li-Chin; Lee, Lo-Tung; Chen, Shu-Chuan; Yu, Chen-Hsin et al. · Nat Commun · 2026

basic_science · Level V

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Abstract

Protein C-termini can vary due to errors or programmed regulation, contributing to proteome diversity, yet their impact on the proteome remains poorly understood. Although aberrant C-termini are often linked to protein degradation, it is unclear if this holds true universally. In this study, we examine how C-terminal variations-arising from disease-associated nonstop mutations, alternative splicing, and translational readthrough-affect protein half-lives. Our findings indicate that, contrary to previous studies, erroneous C-termini can either stabilize or destabilize proteins. We have identified multiple oncoproteins and tumor suppressors whose protein stability is altered by disease-relevant nonstop mutations. Notably, we have found that C-terminal variations commonly influence the stability of canonical proteins, extending beyond their role in protein quality control. Furthermore, we have uncovered C-terminal features that distinguish erroneous from wild-type proteins and reveal that hydrophobic C-termini are targeted by a complex ubiquitin ligase network. Overall, our work broadens the understanding of C-terminal-dependent protein degradation and supports that C-terminal variation is a widespread strategy for generating protein forms with distinct half-lives to exert diverse biological functions.

Medical subject headings