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真核生物信使核糖核酸5'非翻译区在翻译中的作用及其利用反义技术进行的研究。

The role of the 5' untranslated region of eukaryotic messenger RNAs in translation and its investigation using antisense technologies.

作者信息

Pantopoulos K, Johansson H E, Hentze M W

机构信息

Gene Expression Programme, European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Prog Nucleic Acid Res Mol Biol. 1994;48:181-238. doi: 10.1016/s0079-6603(08)60856-9.

Abstract

This chapter discusses the recent advances in the field of translational control and the possibility of applying the powerful antisense technology to investigate some of the unanswered questions, especially those pertaining to the role of the 5’untranslated region UTR) on translation initiation. Translational regulation is predominantly exerted during the initiation phase that is considered to be the rate-limiting step. Two types of translational regulation can be distinguished: in which the initiation rate of (nearly) all cellular messenger RNA (mRNA) is controlled and selective, in which the translation rate of specific mRNAs varies in response to the biological stimuli. In most cases of global regulation, control is exerted via the phosphorylation state of certain initiation factors, whereas only a few examples of selective regulation have been characterized well enough to define the underlying molecular events. Interestingly, cis-acting regulatory sequences, affecting translation initiation, have been found not only in the 5’UTRs of selectively regulated mRNAs, but also in the 3’UTRs. Thus, in addition to the protein encoding open reading frames, both the 5’ and 3’UTRs of mRNAs must be considered for their effect on translation.

摘要

本章讨论了翻译控制领域的最新进展,以及应用强大的反义技术来研究一些未解决问题的可能性,特别是那些与5'非翻译区(UTR)在翻译起始中的作用相关的问题。翻译调控主要在被认为是限速步骤的起始阶段发挥作用。可以区分两种类型的翻译调控:一种是(几乎)所有细胞信使RNA(mRNA)的起始速率受到控制,这是全局性的;另一种是选择性的,特定mRNA的翻译速率会响应生物刺激而变化。在大多数全局性调控的情况下,调控是通过某些起始因子的磷酸化状态来实现的,而只有少数选择性调控的例子得到了充分表征,足以确定潜在的分子事件。有趣的是,影响翻译起始的顺式作用调控序列不仅在选择性调控的mRNA的5'UTR中被发现,也在3'UTR中被发现。因此,除了编码蛋白质的开放阅读框外,mRNA的5'和3'UTR对翻译的影响都必须加以考虑。

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