Suppr超能文献

错配相邻DNA碱基的动力学改变:MutS识别错配的线索。

Altered dynamics of DNA bases adjacent to a mismatch: a cue for mismatch recognition by MutS.

作者信息

Nag Nabanita, Rao B J, Krishnamoorthy G

机构信息

Department of Chemical Sciences, Tata Institute of Fundamental Research, Homi Bhabha Road, Mumbai 400005, India.

出版信息

J Mol Biol. 2007 Nov 16;374(1):39-53. doi: 10.1016/j.jmb.2007.08.065. Epub 2007 Sep 5.

Abstract

The structural deviations as well as the alteration in the dynamics of DNA at mismatch sites are considered to have a crucial role in mismatch recognition followed by its repair utilizing mismatch repair family proteins. To compare the dynamics at a mismatch and a non-mismatch site, we incorporated 2-aminopurine, a fluorescent analogue of adenine next to a G.T mismatch, a C.C mismatch, or an unpaired T, and at several other non-mismatch positions. Rotational diffusion of 2-aminopurine at these locations, monitored by time-resolved fluorescence anisotropy, showed distinct differences in the dynamics. This alteration in the motional dynamics is largely confined to the normally matched base-pairs that are immediately adjacent to a mismatch/ unpaired base and could be used by MutS as a cue for mismatch-specific recognition. Interestingly, the enhanced dynamics associated with base-pairs adjacent to a mismatch are significantly restricted upon MutS binding, perhaps "resetting" the cues for downstream events that follow MutS binding. Recognition of such details of motional dynamics of DNA for the first time in the current study enabled us to propose a model that integrates the details of mismatch recognition by MutS as revealed by the high-resolution crystal structure with that of observed base dynamics, and unveils a minimal composite read-out involving the base mismatch and its adjacent normal base-pairs.

摘要

错配位点处的结构偏差以及DNA动力学的改变被认为在错配识别中起着关键作用,随后利用错配修复家族蛋白进行修复。为了比较错配位点和非错配位点的动力学,我们在G.T错配、C.C错配或未配对的T旁边以及其他几个非错配位置掺入了腺嘌呤的荧光类似物2-氨基嘌呤。通过时间分辨荧光各向异性监测2-氨基嘌呤在这些位置的旋转扩散,结果显示动力学存在明显差异。这种运动动力学的改变主要局限于紧邻错配/未配对碱基的正常配对碱基对,并且可以被MutS用作错配特异性识别的线索。有趣的是,与错配相邻的碱基对相关的增强动力学在MutS结合后受到显著限制,这可能是在“重置”MutS结合后下游事件的线索。在本研究中首次识别出DNA运动动力学的这些细节,使我们能够提出一个模型,该模型将高分辨率晶体结构揭示的MutS对错配的识别细节与观察到的碱基动力学细节整合在一起,并揭示了一个涉及碱基错配及其相邻正常碱基对的最小复合读出机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验