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胍 III 核糖开关的结构。

Structure of the Guanidine III Riboswitch.

机构信息

Cancer Research UK Nucleic Acid Structure Research Group, MSI/WTB Complex, The University of Dundee, Dow Street, Dundee DD1 5EH, UK.

Cancer Research UK Nucleic Acid Structure Research Group, MSI/WTB Complex, The University of Dundee, Dow Street, Dundee DD1 5EH, UK.

出版信息

Cell Chem Biol. 2017 Nov 16;24(11):1407-1415.e2. doi: 10.1016/j.chembiol.2017.08.021. Epub 2017 Oct 5.

Abstract

Riboswitches are structural elements found in mRNA molecules that couple small-molecule binding to regulation of gene expression, usually by controlling transcription or translation. We have determined high-resolution crystal structures of the ykkC guanidine III riboswitch from Thermobifida fusca. The riboswitch forms a classic H-type pseudoknot that includes a triple helix that is continuous with a central core of conserved nucleotides. These form a left-handed helical ramp of inter-nucleotide interactions, generating the guanidinium cation binding site. The ligand is hydrogen bonded to the Hoogsteen edges of two guanine bases. The binding pocket has a side opening that can accommodate a small side chain, shown by structures with bound methylguanidine, aminoguanidine, ethylguanidine, and agmatine. Comparison of the new structure with those of the guanidine I and II riboswitches reveals that evolution generated three different structural solutions for guanidine binding and subsequent gene regulation, although with some common elements.

摘要

Riboswitches 是在 mRNA 分子中发现的结构元件,它们将小分子结合与基因表达的调节偶联起来,通常通过控制转录或翻译来实现。我们已经确定了来自 Thermobifida fusca 的 ykkC 胍 III 核糖开关的高分辨率晶体结构。该核糖开关形成了经典的 H 型假结,包括与保守核苷酸的中央核心连续的三螺旋。这些形成了核苷酸间相互作用的左手螺旋斜坡,产生胍鎓阳离子结合位点。配体与两个鸟嘌呤碱基的 Hoogsteen 边缘形成氢键。结合口袋有一个侧开口,可以容纳小的侧链,通过与结合的甲基胍、氨基胍、乙基胍和胍丁胺的结构显示。与胍 I 和 II 核糖开关的新结构进行比较表明,尽管有一些共同的元素,但进化产生了三种不同的胍结合和随后基因调节的结构解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0712/5696562/3c6697f2f8f8/fx1.jpg

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