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天然mRNA的翻译并不需要tRNA的保守5S rRNA互补序列。

The conserved 5 S rRNA complement to tRNA is not required for translation of natural mRNA.

作者信息

Zagorska L, Van Duin J, Noller H F, Pace B, Johnson K D, Pace N R

出版信息

J Biol Chem. 1984 Mar 10;259(5):2798-802.

PMID:6365917
Abstract

We have tested a putative base-paired interaction between the conserved GT psi C sequence of tRNA and the conserved GAAC47 sequence of 5 S ribosomal RNA by in vitro protein synthesis using ribosomes containing deletions in this region of 5 S rRNA. Ribosomes reconstituted with 5 S rRNA possessing a single break between residues 41 and 42, deletion of residues 42-46, or deletion of residues 42-52 were tested for their ability to translate phage MS2 RNA. Initiator tRNA binding, aminoacyl-tRNA binding, ppGpp synthesis, and miscoding were also tested. All of the measured functions could be carried out by ribosomes carrying the deleted 5 S rRNAs. The sizes and relative amounts of the polypeptides synthesized by MS2 RNA-programmed ribosomes were identical whether or not the 5 S RNA contained deletions. Aminoacyl-tRNA binding and miscoding were essentially unaffected. Significant reduction in ApUpG (but not poly(A,U,G) or MS2 RNA)-directed fMet-tRNA binding and ppGpp synthesis were observed, particularly in the case of the larger (residues 42-52) deletion. We conclude that if tRNA and 5 S rRNA interact in this fashion, it is not an obligatory step in protein synthesis.

摘要

我们通过体外蛋白质合成实验,利用在5S核糖体RNA该区域存在缺失的核糖体,测试了tRNA保守的GTψC序列与5S核糖体RNA保守的GAAC47序列之间假定的碱基配对相互作用。用在残基41和42之间有一个单断点、缺失残基42 - 46或缺失残基42 - 52的5S核糖体RNA重建的核糖体,测试其翻译噬菌体MS2 RNA的能力。还测试了起始tRNA结合、氨酰tRNA结合、ppGpp合成以及错义编码情况。所有测量的功能都可以由携带缺失的5S核糖体RNA的核糖体来完成。无论5S核糖体RNA是否包含缺失,由MS2 RNA编程的核糖体合成的多肽的大小和相对量都是相同的。氨酰tRNA结合和错义编码基本不受影响。观察到ApUpG(但不是聚(A,U,G)或MS2 RNA)指导的fMet - tRNA结合和ppGpp合成显著减少,特别是在较大(残基42 - 52)缺失的情况下。我们得出结论,如果tRNA和5S核糖体RNA以这种方式相互作用,它不是蛋白质合成中的一个必需步骤。

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