Protein degradation by human 20S proteasomes elucidates the interplay between peptide hydrolysis and splicing

蛋白酶体 RNA剪接 生物化学 肽序列 蛋白质剪接 选择性拼接 蛋白质降解 生物 细胞生物学 化学 基因 信使核糖核酸 核糖核酸
作者
Wai Tuck Soh,Hanna P. Roetschke,John A. Cormican,Bei Fang Teo,Nyet Cheng Chiam,Monika Raabe,Ralf Pflanz,F. Henneberg,Stefan Becker,Ashwin Chari,Haiyan Liu,Henning Urlaub,Juliane Liepe,Michele Mishto
出处
期刊:Nature Communications [Springer Nature]
卷期号:15 (1) 被引量:4
标识
DOI:10.1038/s41467-024-45339-3
摘要

Abstract If and how proteasomes catalyze not only peptide hydrolysis but also peptide splicing is an open question that has divided the scientific community. The debate has so far been based on immunopeptidomics, in vitro digestions of synthetic polypeptides as well as ex vivo and in vivo experiments, which could only indirectly describe proteasome-catalyzed peptide splicing of full-length proteins. Here we develop a workflow—and cognate software - to analyze proteasome-generated non-spliced and spliced peptides produced from entire proteins and apply it to in vitro digestions of 15 proteins, including well-known intrinsically disordered proteins such as human tau and α-Synuclein. The results confirm that 20S proteasomes produce a sizeable variety of cis -spliced peptides, whereas trans -spliced peptides are a minority. Both peptide hydrolysis and splicing produce peptides with well-defined characteristics, which hint toward an intricate regulation of both catalytic activities. At protein level, both non-spliced and spliced peptides are not randomly localized within protein sequences, but rather concentrated in hotspots of peptide products, in part driven by protein sequence motifs and proteasomal preferences. At sequence level, the different peptide sequence preference of peptide hydrolysis and peptide splicing suggests a competition between the two catalytic activities of 20S proteasomes during protein degradation.
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