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Rep 蛋白可同时容纳双链 DNA 和单链 DNA,这使得回环机制能够启动质粒 DNA 复制。

Rep protein accommodates together dsDNA and ssDNA which enables a loop-back mechanism to plasmid DNA replication initiation.

机构信息

Intercollegiate Faculty of Biotechnology of University of Gdansk and Medical University of Gdansk, University of Gdansk, Abrahama 58, 80-307 Gdansk, Poland.

Laboratory of Protein Structure, International Institute of Molecular and Cell Biology in Warsaw, Księcia Trojdena 4, 02-109 Warsaw, Poland.

出版信息

Nucleic Acids Res. 2023 Oct 27;51(19):10551-10567. doi: 10.1093/nar/gkad740.

Abstract

For DNA replication initiation in Bacteria, replication initiation proteins bind to double-stranded DNA (dsDNA) and interact with single-stranded DNA (ssDNA) at the replication origin. The structural-functional relationship of the nucleoprotein complex involving initiator proteins is still elusive and different models are proposed. In this work, based on crosslinking combined with mass spectrometry (MS), the analysis of mutant proteins and crystal structures, we defined amino acid residues essential for the interaction between plasmid Rep proteins, TrfA and RepE, and ssDNA. This interaction and Rep binding to dsDNA could not be provided in trans, and both are important for dsDNA melting at DNA unwinding element (DUE). We solved two crystal structures of RepE: one in a complex with ssDNA DUE, and another with both ssDNA DUE and dsDNA containing RepE-specific binding sites (iterons). The amino acid residues involved in interaction with ssDNA are located in the WH1 domain in stand β1, helices α1 and α2 and in the WH2 domain in loops preceding strands β1' and β2' and in these strands. It is on the opposite side compared to RepE dsDNA-recognition interface. Our data provide evidence for a loop-back mechanism through which the plasmid replication initiator molecule accommodates together dsDNA and ssDNA.

摘要

在细菌中,DNA 复制起始需要复制起始蛋白与双链 DNA(dsDNA)结合,并与复制起点处的单链 DNA(ssDNA)相互作用。涉及起始蛋白的核蛋白复合物的结构-功能关系仍然难以捉摸,不同的模型被提出。在这项工作中,我们基于交联结合质谱(MS)分析、突变蛋白分析和晶体结构分析,确定了质粒 Rep 蛋白、TrfA 和 RepE 之间与 ssDNA 相互作用所必需的氨基酸残基。这种相互作用和 Rep 与 dsDNA 的结合不能在转导中提供,并且两者对于在 DNA 解旋元件(DUE)处的 dsDNA 熔解都很重要。我们解决了 RepE 的两个晶体结构:一个与 ssDNA DUE 复合物,另一个与 ssDNA DUE 和包含 RepE 特异性结合位点(迭代子)的 dsDNA 复合物。与 ssDNA 相互作用的氨基酸残基位于 β1 链的 WH1 结构域、α1 和 α2 螺旋以及 β1'和 β2'链以及这些链之前的环中的 WH2 结构域中。它位于与 RepE dsDNA 识别界面相对的一侧。我们的数据提供了证据,证明了通过这种环回机制,质粒复制起始分子可以同时容纳 dsDNA 和 ssDNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95ff/10602881/212857de02f9/gkad740figgra1.jpg

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