首页> 外文期刊>Journal of bacteriology >Switching Protein-DNA Recognition Specificity by Single-Amino-Acid Substitutions in the P1 par Family of Plasmid Partition Elements
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Switching Protein-DNA Recognition Specificity by Single-Amino-Acid Substitutions in the P1 par Family of Plasmid Partition Elements

机译:P1 par家族的质粒分区元素中的单个氨基酸取代交换蛋白质-DNA识别特异性。

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The P1, P7, and pMT1 par systems are members of the P1 par family of plasmid partition elements. Each has a ParA ATPase and a ParB protein that recognizes the parS partition site of its own plasmid type to promote the active segregation of the plasmid DNA to daughter cells. ParB contacts two parS motifs known as BoxA and BoxB, the latter of which determines species specificity. We found that the substitution of a single orthologous amino acid in ParB for that of a different species has major effects on the specificity of recognition. A single change in ParB can cause a complete switch in recognition specificity to that of another species or can abolish specificity. Specificity changes do not necessarily correlate with changes in the gross DNA binding properties of the protein. Molecular modeling suggests that species specificity is determined by the capacity to form a hydrogen bond between ParB residue 288 and the second base in the BoxB sequence. As changes in just one ParB residue and one BoxB base can alter species specificity, plasmids may use such simple changes to evolve new species rapidly.
机译:P1,P7和pMT1 par 系统是质粒分配元件P1 par 家族的成员。每个都具有一个ParA ATPase和一个ParB蛋白,该蛋白识别其自身质粒类型的 parS 分配位点,从而促进质粒DNA主动分离到子代细胞。 ParB与两个 parS 主题(称为BoxA和BoxB)联系,后者决定物种的特异性。我们发现,ParB中的单个直系同源氨基酸替换为不同物种的替换,会对识别的特异性产生重大影响。 ParB的单个更改可能导致识别特异性完全转换为其他物种的识别特异性,或者可能废除特异性。特异性变化不一定与蛋白质总DNA结合特性的变化相关。分子建模表明,物种特异性取决于在ParB残基288和BoxB序列中第二个碱基之间形成氢键的能力。由于仅一个ParB残基和一个BoxB碱基的变化就可以改变物种的特异性,质粒可以利用这种简单的变化迅速进化出新物种。

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