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DNA被困于单链DNA结合蛋白的亚基间通道系统中。

Entrapment of DNA in an intersubunit tunnel system of a single-stranded DNA-binding protein.

作者信息

Ghalei Homa, von Moeller Holger, Eppers Detlef, Sohmen Daniel, Wilson Daniel N, Loll Bernhard, Wahl Markus C

机构信息

Freie Universität Berlin, Fachbereich Biologie, Chemie, Pharmazie, Institut für Chemie und Biochemie, AG Strukturbiochemie, Takustr. 6, 14195 Berlin, Germany Max-Planck-Institute for Biophysical Chemistry, Department of Cellular Biochemistry, Am Fassberg 11, 37077 Göttingen, Germany.

Freie Universität Berlin, Fachbereich Biologie, Chemie, Pharmazie, Institut für Chemie und Biochemie, AG Strukturbiochemie, Takustr. 6, 14195 Berlin, Germany.

出版信息

Nucleic Acids Res. 2014 Jun;42(10):6698-708. doi: 10.1093/nar/gku259. Epub 2014 Apr 17.

Abstract

Instead of a classical single-stranded deoxyribonuleic acid (DNA)-binding protein (SSB), some hyperthermophilic crenarchaea harbor a non-canonical SSB termed ThermoDBP. Two related but poorly characterized groups of proteins, which share the ThermoDBP N-terminal DNA-binding domain, have a broader phylogenetic distribution and co-exist with ThermoDBPs and/or other SSBs. We have investigated the nucleic acid binding properties and crystal structures of representatives of these groups of ThermoDBP-related proteins (ThermoDBP-RPs) 1 and 2. ThermoDBP-RP 1 and 2 oligomerize by different mechanisms and only ThermoDBP-RP2 exhibits strong single-stranded DNA affinity in vitro. A crystal structure of ThermoDBP-RP2 in complex with DNA reveals how the NTD common to ThermoDBPs and ThermoDBP-RPs can contact the nucleic acid in a manner that allows a symmetric homotetrameric protein complex to bind single-stranded DNA molecules asymmetrically. While single-stranded DNA wraps around the surface or binds along channels of previously investigated SSBs, it traverses an internal, intersubunit tunnel system of a ThermoDBP-RP2 tetramer. Our results indicate that some archaea have acquired special SSBs for genome maintenance in particularly challenging environments.

摘要

一些嗜热泉古菌没有典型的单链脱氧核糖核酸(DNA)结合蛋白(SSB),而是含有一种非经典的SSB,称为热DBP。两组相关但特征描述较少的蛋白质,共享热DBP的N端DNA结合结构域,具有更广泛的系统发育分布,并与热DBP和/或其他SSB共存。我们研究了这些与热DBP相关的蛋白质(热DBP-RP)1和2组代表的核酸结合特性和晶体结构。热DBP-RP 1和2通过不同机制寡聚,只有热DBP-RP2在体外表现出对单链DNA的强亲和力。热DBP-RP2与DNA复合物的晶体结构揭示了热DBP和热DBP-RP共有的NTD如何以一种允许对称同四聚体蛋白复合物不对称结合单链DNA分子的方式与核酸接触。虽然单链DNA围绕先前研究的SSB的表面缠绕或沿着通道结合,但它穿过热DBP-RP2四聚体的内部亚基间隧道系统。我们的结果表明,一些古菌在特别具有挑战性的环境中获得了特殊的SSB用于基因组维护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/621b/4041433/4f73ea29e14b/gku259fig1.jpg

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