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March 21, 2026Science4 citations

Human DHX29 detects nonoptimal codon usage to regulate mRNA stability

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FHFabian HiaYWYitong WuMYMasanori Yoshinaga

Key Points

  • This research aims to explore how nonoptimal codon usage affects mRNA stability and identify key regulators in human cells.
  • Conducted genome-wide CRISPR screening to identify regulators of codon-dependent gene expression.
  • Utilized cryogenic electron microscopy to examine interactions at the ribosome A-site.
  • Performed selective ribosome profiling to analyze ribosomal dynamics during protein synthesis.
  • Conducted proteomic analysis to identify interacting partners of DHX29.
  • Identified DHX29 as a critical RNA-binding protein affecting mRNA stability.
  • Demonstrated DHX29's interaction with the A-site of the 80S ribosome.
  • Showed that DHX29 recruits the GIGYF2•4EHP complex to suppress nonoptimal mRNAs.

Abstract

Synonymous codon usage controls global gene expression in both prokaryotic and eukaryotic species. Nonoptimal codons are known to induce mRNA decay; however, the underlying molecular mechanism remains poorly understood in human cells. Through genome-wide CRISPR screening, we identified the RNA-binding protein DHX29 as a critical regulator of codon-dependent gene expression. Cryogenic electron microscopy and selective ribosome profiling demonstrated that DHX29 directly interacts with the A-site entrance of the translating 80S ribosome, the binding site for the eEF1A•GTP•aminoacyl-tRNA ternary complex, suggesting a role in monitoring aminoacyl-tRNA sampling. Proteomic analysis further revealed that DHX29 recruits the GIGYF2•4EHP complex to mediate global suppression of nonoptimal mRNAs. These findings establish a mechanistic link between synonymous codon usage and the regulation of gene expression.

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Cite This Study

Hia et al. (2026) studied this question.

synapsesocial.com/papers/69be36af6e48c4981c675bdfhttps://doi.org/10.1126/science.adw0288
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