Mechanism of ribosome rescue by alternative ribosome-rescue factor B

被引:0
|
作者
Kai-Hsin Chan
Valentyn Petrychenko
Claudia Mueller
Cristina Maracci
Wolf Holtkamp
Daniel N. Wilson
Niels Fischer
Marina V. Rodnina
机构
[1] Max Planck Institute for Biophysical Chemistry,Department of Physical Biochemistry
[2] Max Planck Institute for Biophysical Chemistry,Department of Structural Dynamics
[3] University of Hamburg,Institute for Biochemistry and Molecular Biology
[4] Paul-Ehrlich-Institut,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Alternative ribosome-rescue factor B (ArfB) rescues ribosomes stalled on non-stop mRNAs by releasing the nascent polypeptide from the peptidyl-tRNA. By rapid kinetics we show that ArfB selects ribosomes stalled on short truncated mRNAs, rather than on longer mRNAs mimicking pausing on rare codon clusters. In combination with cryo-electron microscopy we dissect the multistep rescue pathway of ArfB, which first binds to ribosomes very rapidly regardless of the mRNA length. The selectivity for shorter mRNAs arises from the subsequent slow engagement step, as it requires longer mRNA to shift to enable ArfB binding. Engagement results in specific interactions of the ArfB C-terminal domain with the mRNA entry channel, which activates peptidyl-tRNA hydrolysis by the N-terminal domain. These data reveal how protein dynamics translate into specificity of substrate recognition and provide insights into the action of a putative rescue factor in mitochondria.
引用
收藏
相关论文
共 50 条
  • [21] Ribosome collisions induce mRNA cleavage and ribosome rescue in bacteria
    Kazuki Saito
    Hanna Kratzat
    Annabelle Campbell
    Robert Buschauer
    A. Maxwell Burroughs
    Otto Berninghausen
    L. Aravind
    Rachel Green
    Roland Beckmann
    Allen R. Buskirk
    Nature, 2022, 603 : 503 - 508
  • [22] Ribosome collisions induce mRNA cleavage and ribosome rescue in bacteria
    Saito, Kazuki
    Kratzat, Hanna
    Campbell, Annabelle
    Buschauer, Robert
    Burroughs, A. Maxwell
    Berninghausen, Otto
    Aravind, L.
    Green, Rachel
    Beckmann, Roland
    Buskirk, Allen R.
    NATURE, 2022, 603 (7901) : 503 - +
  • [23] Mutational analysis of Escherichia coli ribosome rescue factor ArfA
    Kishimoto, Masayuki
    Chadani, Yuhei
    Morikawa, Jyunki
    Abo, Tatsuhiko
    GENES & GENETIC SYSTEMS, 2012, 87 (06) : 433 - 433
  • [24] Structural Basis for Ribosome Rescue in Bacteria
    Huter, Paul
    Mueller, Claudia
    Arenz, Stefan
    Beckert, Bertrand
    Wilson, Daniel N.
    TRENDS IN BIOCHEMICAL SCIENCES, 2017, 42 (08) : 669 - 680
  • [25] Maintaining mitochondrial ribosome function: The role of ribosome rescue and recycling factors
    Nadler, Franziska
    Lavdovskaia, Elena
    Richter-Dennerlein, Ricarda
    RNA BIOLOGY, 2022, 19 (01) : 117 - 131
  • [26] The tmRNA system for translational surveillance and ribosome rescue
    Moore, Sean D.
    Sauer, Robert T.
    ANNUAL REVIEW OF BIOCHEMISTRY, 2007, 76 : 101 - 124
  • [27] A glimpse into tmRNA-mediated ribosome rescue
    Moore, SD
    McGinness, KE
    Sauer, RT
    SCIENCE, 2003, 300 (5616) : 72 - 73
  • [28] Ribosome Rescue and Protein Quality Control in Concert
    Hilal, Tarek
    Spahn, Christian M. T.
    MOLECULAR CELL, 2015, 57 (03) : 389 - 390
  • [29] Ribosome rescue by tmRNA requires truncated mRNAs
    Ivanova, N
    Pavlov, MY
    Felden, B
    Ehrenberg, M
    JOURNAL OF MOLECULAR BIOLOGY, 2004, 338 (01) : 33 - 41
  • [30] Ribosome rescue by Escherichia coli ArfA protein
    Abo, Tatsuhiko
    Chadani, Yuhei
    Kutsukake, Kazuhiro
    GENES & GENETIC SYSTEMS, 2013, 88 (06) : 345 - 345