Abstract

Accurate gene expression is a prerequisite for all cellular processes. Cells actively promote correct protein folding, which prevents the accumulation of abnormal and non-functional proteins. Translation elongation is the fundamental step in gene expression to ensure cellular functions, and abnormal translation arrest is recognized and removed by the quality controls. Recent studies demonstrated that ribosome plays crucial roles as a hub for gene regulation and quality controls. Ribosome-interacting factors are critical for the quality control mechanisms responding to abnormal translation arrest by targeting its products for degradation. Aberrant mRNAs are produced by errors in mRNA maturation steps and cause aberrant translation and are eliminated by the quality control system. In this review, we focus on recent progress on two quality controls, Ribosome-associated Quality Control (RQC) and No-Go Decay (NGD), for abnormal translational elongation. These quality controls recognize aberrant ribosome stalling and induce rapid degradation of aberrant polypeptides and mRNAs thereby maintaining protein homeostasis and preventing the protein aggregation.

Highlights

  • Protein synthesis is a fundamental step of gene expression in all organisms

  • Ribosome-associated Quality Control (RQC) machinery is well conserved from yeast to human cells and related in cytosolic protein quality control and in mitochondrial function, protein aggregation, and neurodegeneration

  • We mainly describe the mechanism of RQC and No-Go Decay (NGD) in yeast because it has been extensively investigated in yeast

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Summary

Frontiers in Genetics

Translation elongation is the fundamental step in gene expression to ensure cellular functions, and abnormal translation arrest is recognized and removed by the quality controls. Recent studies demonstrated that ribosome plays crucial roles as a hub for gene regulation and quality controls. Ribosome-interacting factors are critical for the quality control mechanisms responding to abnormal translation arrest by targeting its products for degradation. We focus on recent progress on two quality controls, Ribosome-associated Quality Control (RQC) and No-Go Decay (NGD), for abnormal translational elongation. These quality controls recognize aberrant ribosome stalling and induce rapid degradation of aberrant polypeptides and mRNAs thereby maintaining protein homeostasis and preventing the protein aggregation

INTRODUCTION
Ribosome Ubiquitination Is Required for the Subunit Dissociation in RQC
The RQT Complex Has Potential to Dissociate the Subunit in RQC
Roles of Ribosome Collision and Ribosome Ubiquitination in NGD
AUTHOR CONTRIBUTIONS

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