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低语突变:遗传密码中的隐秘信息。

Whisper mutations: cryptic messages within the genetic code.

作者信息

Fåhraeus R, Marin M, Olivares-Illana V

机构信息

Équipe Labellisée Ligue Contre le Cancer, INSERM UMRS1162, Institut de Génétique Moléculaire, Université Paris 7, IUH Hôpital St Louis, Paris, France.

RECAMO, Masaryk Memorial Cancer Institute, Zluty kopec 7, Brno, Czech Republic.

出版信息

Oncogene. 2016 Jul 21;35(29):3753-9. doi: 10.1038/onc.2015.454. Epub 2015 Dec 14.

Abstract

Recent years have seen a great expansion in our understandings of how silent mutations can drive a disease and that mRNAs are not only mere messengers between the genome and the encoded proteins but also encompass regulatory activities. This review focuses on how silent mutations within open reading frames can affect the functional properties of the encoded protein. We describe how mRNAs exert control of cell biological processes governed by the encoded proteins via translation kinetics, protein folding, mRNA stability, spatio-temporal protein expression and by direct interactions with cellular factors. These examples illustrate how additional levels of information lie within the coding sequences and that the degenerative genetic code is not redundant and have co-evolved with the encoded proteins. Hence, so called synonymous mutations are not always silent but 'whisper'.

摘要

近年来,我们对于沉默突变如何引发疾病以及信使核糖核酸(mRNA)不仅是基因组与编码蛋白之间的单纯信使,还具有调控活性的理解有了极大拓展。本综述聚焦于开放阅读框内的沉默突变如何影响编码蛋白的功能特性。我们阐述了mRNA如何通过翻译动力学、蛋白质折叠、mRNA稳定性、时空蛋白表达以及与细胞因子的直接相互作用,对由编码蛋白所调控的细胞生物学过程施加控制。这些例子说明了编码序列中存在额外的信息层面,以及简并遗传密码并非冗余,而是与编码蛋白共同进化。因此,所谓的同义突变并不总是沉默的,而是会“低语”。

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