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Thermodynamic analysis of DNA binding by a Bacillus single stranded DNA binding protein

机译:芽孢杆菌单链DNA结合蛋白结合DNA的热力学分析

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Single-stranded DNA binding proteins (SSB) are essential for DNA replication, repair, and recombination in all organisms. SSB works in concert with a variety of DNA metabolizing enzymes such as DNA polymerase. We have cloned and purified SSB from Bacillus anthracis (SSBBA). In the absence of DNA, at concentrations ≤100 μg/ml, SSBBA did not form a stable tetramer and appeared to resemble bacteriophage T4 gene 32 protein. Fluorescence anisotropy studies demonstrated that SSBBA bound ssDNA with high affinity comparable to other prokaryotic SSBs. Thermodynamic analysis indicated both hydrophobic and ionic contributions to ssDNA binding. FRET analysis of oligo(dT)70 binding suggested that SSBBA forms a tetrameric assembly upon ssDNA binding. This report provides evidence of a bacterial SSB that utilizes a novel mechanism for DNA binding through the formation of a transient tetrameric structure. Unlike other prokaryotic SSB proteins, SSBBA from Bacillus anthracis appeared to be monomeric at concentrations ≤100 μg/ml as determined by SE-HPLC. SSBBA retained its ability to bind ssDNA with very high affinity, comparable to SSB proteins which are tetrameric. In the presence of a long ssDNA template, SSBBA appears to form a transient tetrameric structure. Its unique structure appears to be due to the cumulative effect of multiple key amino acid changes in its sequence during evolution, leading to perturbation of stable dimer and tetramer formation. The structural features of SSBBA could promote facile assembly and disassembly of the protein-DNA complex required in processes such as DNA replication.
机译:单链DNA结合蛋白(SSB)对于所有生物中的DNA复制,修复和重组都是必不可少的。 SSB与多种DNA代谢酶(例如DNA聚合酶)协同工作。我们已经从炭疽芽孢杆菌(SSBBA)中克隆并纯化了SSB。在不存在DNA的情况下,浓度≤100μg/ ml时,SSBBA不能形成稳定的四聚体,似乎类似于噬菌体T4基因32蛋白。荧光各向异性研究表明,SSBBA以与其他原核SSB相当的高亲和力结合ssDNA。热力学分析表明疏水和离子对ssDNA结合的贡献。寡聚(dT)70结合的FRET分析表明SSBBA在ssDNA结合后形成四聚体组装。该报告提供了细菌SSB的证据,该细菌利用一种新颖的机制通过瞬时四聚体结构的形成与DNA结合。与其他原核SSB蛋白不同,炭疽芽孢杆菌的SSBBA通过SE-HPLC测定,在浓度≤100μg/ ml时呈单体状。与四聚体的SSB蛋白相比,SSBBA保留了以非常高的亲和力结合ssDNA的能力。在长的ssDNA模板存在下,SSBBA似乎形成了瞬时四聚体结构。它的独特结构似乎是由于进化过程中其序列中多个关键氨基酸变化的累积效应,导致对稳定的二聚体和四聚体形成的干扰。 SSBBA的结构特征可以促进DNA复制等过程中所需的蛋白质-DNA复合物的容易组装和拆卸。

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