首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Soj (ParA) DNA binding is mediated by conserved arginines and is essential for plasmid segregation
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Soj (ParA) DNA binding is mediated by conserved arginines and is essential for plasmid segregation

机译:Soj(ParA)DNA结合是由保守的精氨酸介导的,对于质粒分离至关重要

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Soj is a member of the ParA family of ATPases involved in plasmid and chromosomal segregation. It binds nonspecifically and cooperatively to DNA although the function of this binding is unknown. Here, we show that mutation of conserved arginine residues that map to the surface of Bacillus subtilis Soj caused only minimal effects on nucleotide-dependent dimerization but had dramatic effects on DNA binding. Using a model plasmid partitioning system in Escherichia coli, we find that Soj DNA-binding mutants are deficient in plasmid segregation. The location of the arginines on the Soj structure explains why DNA binding depends on dimerization and was used to orient the Soj dimer on the DNA, revealing the axis of Soj polymerization. The arginine residues are conserved among other chromosomal homologues, including the ParAs from Caulobacter crescentus, Pseudomonas aeruginosa, Pseudomonas putida, Streptomyces coelicolor, and chromosome I of Vibrio chol-erae indicating that DNA binding is a common feature of members of this family.
机译:Soj是参与质粒和染色体分离的ATPase ParA家族的成员。尽管这种结合的功能是未知的,但它非特异性地与DNA结合。在这里,我们表明,映射到枯草芽孢杆菌Soj表面的保守精氨酸残基的突变仅对核苷酸依赖性二聚化产生最小的影响,但对DNA结合具有显着影响。使用大肠杆菌中的模型质粒分配系统,我们发现Soj DNA结合突变体缺乏质粒分离。精氨酸在Soj结构上的位置解释了为什么DNA结合依赖于二聚化,并被用来在DNA上定向Soj二聚体,从而揭示了Soj聚合的轴。精氨酸残基在其他染色体同源物中是保守的,包括来自新月形杆菌,铜绿假单胞菌,恶臭假单胞菌,大肠杆菌链霉菌的ParAs和霍乱弧菌的染色体I,这表明DNA结合是该家族成员的共同特征。

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