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诱导契合增强截短侧耳素与核糖体的结合,远程相互作用赋予其选择性。

Induced-fit tightens pleuromutilins binding to ribosomes and remote interactions enable their selectivity.

作者信息

Davidovich Chen, Bashan Anat, Auerbach-Nevo Tamar, Yaggie Rachel D, Gontarek Richard R, Yonath Ada

机构信息

Department of Structural Biology, Weizmann Institute, Rehovot 76100, Israel.

出版信息

Proc Natl Acad Sci U S A. 2007 Mar 13;104(11):4291-6. doi: 10.1073/pnas.0700041104. Epub 2007 Mar 8.

DOI:10.1073/pnas.0700041104
PMID:17360517
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1817833/
Abstract

New insights into functional flexibility at the peptidyl transferase center (PTC) and its vicinity were obtained by analysis of pleuromutilins binding modes to the ribosome. The crystal structures of Deinococcus radiodurans large ribosomal subunit complexed with each of three pleuromutilin derivatives: retapamulin (SB-275833), SB-280080, and SB-571519, show that all bind to the PTC with their core oriented similarly at the A-site and their C14 extensions pointing toward the P-site. Except for an H-bond network with a single nucleotide, G2061, which involves the essential keto group of all three compounds, only minor hydrophobic contacts are formed between the pleuromutilin C14 extensions and any ribosomal component, consistent with the PTC tolerance to amino acid diversity. Efficient drug binding mode is attained by a mechanism based on induced-fit motions exploiting the ribosomal intrinsic functional flexibility and resulting in conformational rearrangements that seal the pleuromutilin-binding pocket and tightens it up. Comparative studies identified a network of remote interactions around the PTC, indicating that pleuromutilins selectivity is acquired by nonconserved nucleotides residing in the PTC vicinity, in a fashion resembling allosterism. Likewise, pleuromutilin resistant mechanisms involve nucleotides residing in the environs of the binding pocket, consistent with their slow resistance-development rates.

摘要

通过分析截短侧耳素与核糖体的结合模式,人们对肽基转移酶中心(PTC)及其附近区域的功能灵活性有了新的认识。嗜放射栖热菌大核糖体亚基与三种截短侧耳素衍生物(瑞他帕林(SB - 275833)、SB - 280080和SB - 571519)分别形成的晶体结构表明,它们均以核心在A位点方向相似且C14延伸指向P位点的方式结合到PTC。除了与单个核苷酸G2061形成氢键网络(该网络涉及所有三种化合物的必需酮基)外,截短侧耳素的C14延伸与任何核糖体组分之间仅形成少量疏水接触,这与PTC对氨基酸多样性的耐受性一致。高效的药物结合模式是通过一种基于诱导契合运动的机制实现的,该机制利用核糖体固有的功能灵活性,导致构象重排,从而封闭并收紧截短侧耳素结合口袋。比较研究确定了PTC周围的远程相互作用网络,表明截短侧耳素的选择性是由位于PTC附近的非保守核苷酸以类似变构的方式获得的。同样,截短侧耳素耐药机制涉及位于结合口袋周围环境中的核苷酸,这与其耐药性发展速度缓慢一致。

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