Random mutagenesis of yeast 25S rRNA identify bases critical for 60S subunit structural integrity and function

N. Nemoto, T. Udagawa, Wasimul Q. Chowdhury, M. Kitabatake, Byung-shik Shin, H. Hiraishi, Suzhi Wang, C. R. Singh, Susan J. Brown, M. Ohno, K. Asano
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引用次数: 4

Abstract

In yeast Saccharomyces cerevisiae, 25S rRNA makes up the major mass and shape of the 60S ribosomal subunit. During translation initiation, the 60S subunit joins the 40S initiation complex, producing the 80S initiation complex. During elongation, the 60S subunit binds the CCA-ends of aminoacyl- and peptidyl-tRNAs at the A-loop and P-loop, respectively, transferring the peptide onto the α-amino group of the aminoacyl-tRNA. To study the role of 25S rRNA in translation in vivo, we randomly mutated 25S rRNA and isolated and characterized seven point mutations that affected yeast cell growth and polysome profiles. Four of these mutations, G651A, A1435U, A1446G and A1587G, change a base involved in base triples crucial for structural integrity. Three other mutations change bases near the ribosomal surface: C2879U and U2408C alter the A-loop and P-loop, respectively, and G1735A maps near a Eukarya-specific bridge to the 40S subunit. By polysome profiling in mmslΔ mutants defective in nonfunctional 25S rRNA decay, we show that some of these mutations are defective in both the initiation and elongation phases of translation. Of the mutants characterized, C2879U displays the strongest defect in translation initiation. The ribosome transit-time assay directly shows that this mutation is also defective in peptide elongation/termination. Thus, our genetic analysis not only identifies bases critical for structural integrity of the 60S subunit, but also suggests a role for bases near the peptidyl transferase center in translation initiation.
酵母25S rRNA随机突变鉴定60S亚基结构完整性和功能的关键碱基
在酵母中,25S rRNA构成60S核糖体亚基的主要质量和形状。在翻译起始过程中,60S亚基加入40S起始复合体,产生80S起始复合体。在延伸过程中,60S亚基分别结合氨基酰基和肽基trna的a环和p环上的cca端,将肽转移到氨基酰基trna的α-氨基上。为了研究25S rRNA在体内翻译中的作用,我们随机突变了25S rRNA,分离并鉴定了7个影响酵母细胞生长和多聚体谱的点突变。其中四个突变,G651A, A1435U, A1446G和A1587G,改变了一个涉及碱基三元组的碱基,这对结构完整性至关重要。另外三个突变改变了核糖体表面附近的碱基:C2879U和U2408C分别改变了a环和p环,G1735A位于真核生物特异性桥附近的40S亚基。通过对mmslΔ突变体的多聚体分析,我们发现其中一些突变在翻译的起始和延伸阶段都有缺陷。在所研究的突变体中,C2879U的翻译起始缺陷最为明显。核糖体传递时间测定直接表明该突变在肽延伸/终止方面也存在缺陷。因此,我们的遗传分析不仅确定了对60S亚基结构完整性至关重要的碱基,而且还提示了肽基转移酶中心附近的碱基在翻译起始中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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