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核糖开关通过代谢物诱导的构象变化来实施基因调控。

Riboswitches exert genetic control through metabolite-induced conformational change.

作者信息

Soukup Juliane K, Soukup Garrett A

机构信息

Department of Chemistry, Creighton University, 2500 California Plaza, Omaha, Nebraska 68178, USA.

出版信息

Curr Opin Struct Biol. 2004 Jun;14(3):344-9. doi: 10.1016/j.sbi.2004.04.007.

Abstract

Conserved RNA structures have traditionally been thought of as potential binding sites for protein factors and consequently are regarded as fulfilling relatively passive albeit important roles in cellular processes. With the discovery of riboswitches, RNA no longer takes a backseat to protein when it comes to affecting gene expression. Riboswitches bind directly to cellular metabolites with exceptional specificity and affinity, and exert control over gene expression through ligand-induced conformational changes in RNA structure. Riboswitches now represent a widespread mechanism by which cells monitor their metabolic state and facilely alter gene expression in response to changing conditions.

摘要

传统上,保守的RNA结构一直被认为是蛋白质因子的潜在结合位点,因此在细胞过程中被视为发挥着相对被动但重要的作用。随着核糖开关的发现,在影响基因表达方面,RNA不再屈居蛋白质之后。核糖开关以非凡的特异性和亲和力直接与细胞代谢物结合,并通过配体诱导的RNA结构构象变化来控制基因表达。核糖开关现在代表了一种广泛存在的机制,通过该机制细胞可以监测其代谢状态,并根据变化的条件轻松改变基因表达。

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