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核糖开关:基因调控RNA对小分子的识别

Riboswitches: small-molecule recognition by gene regulatory RNAs.

作者信息

Edwards Thomas E, Klein Daniel J, Ferré-D'Amaré Adrian R

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle, WA 98109-1024, USA.

出版信息

Curr Opin Struct Biol. 2007 Jun;17(3):273-9. doi: 10.1016/j.sbi.2007.05.004. Epub 2007 Jun 15.

Abstract

Riboswitches demonstrate the ability of highly structured RNA molecules to recognize small-molecule metabolites with high specificity and subsequently harness the binding energy for the control of gene expression. Crystal structures have now been determined for the metabolite-binding domains of riboswitches that respond to purines, thiamine pyrophosphate and S-adenosylmethionine, as well as for the glmS ribozyme, a catalytic riboswitch that is activated by the metabolite glucosamine-6-phosphate. In addition to these riboswitch structures, a solution NMR structure has been reported for a ribosensor that regulates heat shock genes in response to changes in temperature. These studies reveal the structural basis of the remarkable selectivity of riboswitches and, in conjunction with biochemical and biophysical measurements, provide a framework for detailed mechanistic understanding of riboswitch-mediated modulation of gene expression.

摘要

核糖开关展示了高度结构化的RNA分子以高特异性识别小分子代谢物并随后利用结合能来控制基因表达的能力。现已确定了对嘌呤、硫胺素焦磷酸和S-腺苷甲硫氨酸有反应的核糖开关的代谢物结合结构域的晶体结构,以及对由代谢物6-磷酸葡萄糖胺激活的催化性核糖开关—— glmS核酶的晶体结构。除了这些核糖开关结构外,还报道了一种响应温度变化调节热休克基因的核糖传感器的溶液核磁共振结构。这些研究揭示了核糖开关显著选择性的结构基础,并与生化和生物物理测量相结合,为详细理解核糖开关介导的基因表达调控机制提供了一个框架。

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