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起始密码子关联核糖体移码调控营养胁迫适应。

Start codon-associated ribosomal frameshifting mediates nutrient stress adaptation.

机构信息

Division of Nutritional Sciences, Cornell University, Ithaca, NY, USA.

Liangzhu Laboratory, Zhejiang University, Hangzhou, China.

出版信息

Nat Struct Mol Biol. 2023 Nov;30(11):1816-1825. doi: 10.1038/s41594-023-01119-z. Epub 2023 Nov 13.

Abstract

A translating ribosome is typically thought to follow the reading frame defined by the selected start codon. Using super-resolution ribosome profiling, here we report pervasive out-of-frame translation immediately from the start codon. Start codon-associated ribosomal frameshifting (SCARF) stems from the slippage of ribosomes during the transition from initiation to elongation. Using a massively paralleled reporter assay, we uncovered sequence elements acting as SCARF enhancers or repressors, implying that start codon recognition is coupled with reading frame fidelity. This finding explains thousands of mass spectrometry spectra that are unannotated in the human proteome. Mechanistically, we find that the eukaryotic initiation factor 5B (eIF5B) maintains the reading frame fidelity by stabilizing initiating ribosomes. Intriguingly, amino acid starvation induces SCARF by proteasomal degradation of eIF5B. The stress-induced SCARF protects cells from starvation by enabling amino acid recycling and selective mRNA translation. Our findings illustrate a beneficial effect of translational 'noise' in nutrient stress adaptation.

摘要

传统观点认为,翻译核糖体通常遵循所选起始密码子定义的阅读框架。在这里,我们使用超分辨率核糖体分析技术报告了从起始密码子开始的普遍的框架外翻译。起始密码子相关核糖体移码(SCARF)源于核糖体在从起始到延伸的过渡过程中的滑动。通过大规模平行报告基因分析,我们发现了起 SCARF 增强子或抑制子作用的序列元件,这意味着起始密码子识别与阅读框架保真度相关。这一发现解释了数千个人类蛋白质组中未注释的质谱谱。从机制上讲,我们发现真核起始因子 5B(eIF5B)通过稳定起始核糖体来维持阅读框架保真度。有趣的是,氨基酸饥饿通过蛋白酶体降解 eIF5B 诱导 SCARF。应激诱导的 SCARF 通过氨基酸回收和选择性 mRNA 翻译来保护细胞免受饥饿。我们的研究结果说明了在营养压力适应中翻译“噪声”的有益效果。

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