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酿酒酵母 Asc1p 在高温下翻译起始中的关键作用。

Critical Role for Saccharomyces cerevisiae Asc1p in Translational Initiation at Elevated Temperatures.

机构信息

Department of Pathology, Microbiology and Immunology, School of Medicine, Vanderbilt University, Nashville, TN, 37232, USA.

Department of Molecular Biosciences and the Proteomics Center of Excellence, Northwestern University, 2145 N. Sheridan Road, Evanston, IL, 60208, USA.

出版信息

Proteomics. 2018 Dec;18(23):e1800208. doi: 10.1002/pmic.201800208. Epub 2018 Oct 23.

Abstract

The eukaryotic ribosomal protein RACK1/Asc1p is localized to the mRNA exit channel of the 40S subunit but lacks a defined role in mRNA translation. Saccharomyces cerevisiae deficient in ASC1 exhibit temperature-sensitive growth. Using this null mutant, potential roles for Asc1p in translation and ribosome biogenesis are evaluated. At the restrictive temperature the asc1Δ null mutant has reduced polyribosomes. To test the role of Asc1p in ribosome stability, cryo-EM is used to examine the structure of 80S ribosomes in an asc1Δ yeast deletion mutant at both the permissive and nonpermissive temperatures. CryoEM indicates that loss of Asc1p does not severely disrupt formation of this complex structure. No defect is found in rRNA processing in the asc1Δ null mutant. A proteomic approach is applied to survey the effect of Asc1p loss on the global translation of yeast proteins. At the nonpermissive temperature, the asc1Δ mutant has reduced levels of ribosomal proteins and other factors critical for translation. Collectively, these results are consistent with recent observations suggesting that Asc1p is important for ribosome occupancy of short mRNAs. The results show the Asc1 ribosomal protein is critical in translation during heat stress.

摘要

真核核糖体蛋白 RACK1/Asc1p 定位于 40S 亚基的 mRNA 出口通道,但在 mRNA 翻译中缺乏明确的作用。缺乏 ASC1 的酿酒酵母表现出温度敏感型生长。利用这个缺失突变体,评估了 Asc1p 在翻译和核糖体生物发生中的潜在作用。在限制温度下,asc1Δ 缺失突变体的多核糖体减少。为了测试 Asc1p 在核糖体稳定性中的作用,使用 cryo-EM 在允许和不允许温度下检查 asc1Δ 酵母缺失突变体中 80S 核糖体的结构。cryo-EM 表明,失去 Asc1p 不会严重破坏这种复杂结构的形成。在 asc1Δ 缺失突变体中没有发现 rRNA 加工的缺陷。采用蛋白质组学方法来调查 Asc1p 缺失对酵母蛋白整体翻译的影响。在非允许温度下,asc1Δ 突变体的核糖体蛋白和其他对翻译至关重要的因子水平降低。总的来说,这些结果与最近的观察结果一致,表明 Asc1p 对短 mRNA 的核糖体占据很重要。结果表明,Asc1 核糖体蛋白在热应激时的翻译中至关重要。

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本文引用的文献

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Saccharomyces Genome Database: the genomics resource of budding yeast.酿酒酵母基因组数据库:芽殖酵母的基因组资源。
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