Formyl-methionine-mediated eukaryotic ribosome quality control pathway for cold adaptation

  • Lee, Chang-Seok
  • Sim, Jaehwan
  • Kim, Sang-Yoon
  • Lee, Hyeonji
  • Roh, Tae-Young
  • 외 1명
Citations

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5
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6

초록

Protein synthesis in the eukaryotic cytosol can start using both conventional methionine and formyl-methionine (fMet). However, a mechanism, if such exists, for detecting and regulating the incorporation of fMet (instead of Met) during translation, thereby preventing cellular toxicity of nascent fMet-bearing (fMet-) poly- peptides, remains unknown. Here, we describe the fMet-mediated ribosome quality control (fMet-RQC) pathway in Saccharomyces cerevisiae. A eukaryotic translation initiation factor 3 subunit c, Nip1, specifically recognizes N-terminal fMet in nascent polypeptides, recruiting a small GTPase, Arf1, to induce ribosome stalling, largely with 41-residue fMet-peptidyl tRNAs. This leads to ribosome dissociation and subsequent stress granule formation. Loss of the fMet-RQC pathway causes the continued synthesis of fMet polypeptides, which inhibits essential N-terminal Met modifications and promotes their coaggregation with ribosomes. This fMet-RQC pathway is important for the adaptation of yeast cells to cold stress by promoting stress granule formation and preventing a buildup of toxic fMet polypeptides.

키워드

Arf1cellular adaptationcold stressformyl-methionineNip1proteotoxicityribosome quality controlstress granuleADP-RIBOSYLATION FACTORE3 UBIQUITIN LIGASEMESSENGER-RNAPROTEIN-SYNTHESISTRANSLATION ELONGATIONINITIATIONSUBUNITCOMPLEXDEGRADATIONMACHINERY
제목
Formyl-methionine-mediated eukaryotic ribosome quality control pathway for cold adaptation
저자
Lee, Chang-SeokSim, JaehwanKim, Sang-YoonLee, HyeonjiRoh, Tae-YoungHwang, Cheol-Sang
DOI
10.1016/j.molcel.2024.11.035
발행일
2025-02-06
유형
Article
저널명
Molecular Cell
85
3
페이지
602 ~ 619.e16