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内部核糖体进入位点(IRESs):现状与应用

Internal ribosome entry sites (IRESs): reality and use.

作者信息

Houdebine L M, Attal J

机构信息

Laboratoire de Differenciation Cellulaire, Institut National de la Recherche Agronomique, Jouy-en-Josas, France.

出版信息

Transgenic Res. 1999 Jun;8(3):157-77. doi: 10.1023/a:1008909908180.

Abstract

IRESs are known to recruit ribosomes directly, without a previous scanning of untranslated region of mRNA by the ribosomes. IRESs have been found in a number of viral and cellular mRNAs. Experimentally, IRESs are commonly used to direct the expression of the second cistrons of bicistronic mRNAs. The mechanism of action of IRESs is not fully understood and a certain number of laboratories were not successful in using them in a reliable manner. Three observations done in our laboratory suggested that IRESs might not work as functionally as it was generally believed. Stem loops added before IRESs inhibited mRNA translation. When added into bicistronic mRNAs, IRESs initiated translation of the second cistrons efficiently only when the intercistronic region contained about 80 nucleotides, and they did not work any more effectively with intercistronic regions containing at least 300-400 nucleotides. Conversely, IRESs inserted at any position into the coding region of a cistron interrupted its translation and initiated translation of the following cistron. The first two data are hardly compatible with the idea that IRESs are able to recruit ribosomes without using the classical scanning mechanism. IRESs are highly structured and cannot be scanned by the 40S ribosomal subunit. We suggest that IRESs are short-circuited and are essentially potent stimulators favoring translation in particular physiological situations.

摘要

内部核糖体进入位点(IRESs)已知可直接招募核糖体,而无需核糖体事先扫描mRNA的非翻译区。IRESs已在许多病毒和细胞mRNA中被发现。在实验中,IRESs通常用于指导双顺反子mRNA中第二个顺反子的表达。IRESs的作用机制尚未完全了解,一些实验室未能以可靠的方式使用它们。我们实验室的三项观察结果表明,IRESs的功能可能不像人们普遍认为的那样有效。在IRESs之前添加的茎环会抑制mRNA翻译。当添加到双顺反子mRNA中时,只有当顺反子间区域包含约80个核苷酸时,IRESs才能有效地启动第二个顺反子的翻译,而对于包含至少300 - 400个核苷酸的顺反子间区域,它们的作用并不更有效。相反,IRESs插入到一个顺反子编码区的任何位置都会中断其翻译,并启动后续顺反子的翻译。前两个数据很难与IRESs能够在不使用经典扫描机制的情况下招募核糖体的观点相契合。IRESs具有高度结构化,无法被40S核糖体亚基扫描。我们认为IRESs是短路的,本质上是在特定生理情况下促进翻译的有效刺激物。

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