F质粒分离蛋白SopA的最后c端螺旋在类核结合和质粒维持中的作用

IF 1.8 4区 生物学 Q3 GENETICS & HEREDITY Plasmid Pub Date : 2022-01-01 DOI:10.1016/j.plasmid.2022.102617
Dipika Mishra, Anirudh Jakhmola, Ramanujam Srinivasan
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引用次数: 0

摘要

抗生素耐药性的迅速出现和传播是一个日益严重的全球负担。抗生素耐药性通常与大的单拷贝或低拷贝数的质粒有关,这些质粒依赖于细胞骨架蛋白的稳定维持。虽然R质粒的质粒分配机制已经很好地建立起来,但维持F质粒的分子细节才刚刚开始出现。F质粒的配分功能依赖于ParA/ MinD蛋白家族,即SopA。SopA凭借其依赖于atp的非特异性DNA结合活性和与细菌类核的结合,驱动F质粒分离到子细胞中。这种功能进一步依赖于SopBC复合物对SopA atp酶活性的刺激。在这里,我们报道了SopA末端c端螺旋上的几个残基在SopA功能和质粒维持中起着至关重要但独特的作用。虽然SopA中最后5个残基的缺失并不影响其结合类核或SopB的能力,但它们严重影响了质粒的分配功能。此外,我们发现虽然c端螺旋中某些极性残基的突变仅轻微影响其定位到类核,但其他突变会导致nsDNA结合缺陷并破坏质粒维持功能。
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A role for the last C-terminal helix of the F plasmid segregating protein SopA in nucleoid binding and plasmid maintenance

The rapid emergence and spread of antibiotic resistance is a growing global burden. Antibiotic resistance is often associated with large single or low copy number plasmids, which rely upon cytoskeletal proteins for their stable maintenance. While the mechanism of plasmid partitioning has been well established for the R plasmids, the molecular details by which the F plasmid is maintained is only beginning to emerge. The partitioning function of the F plasmid depends upon a ParA/ MinD family of proteins known as SopA. SopA, by virtue of its ATP-dependent non-specific DNA binding activity and association with the bacterial nucleoid, drives the segregation of the F plasmid into the daughter cells. This function further depends upon the stimulation of the ATPase activity of SopA by the SopBC complex. Here, we report that several residues in the last C-terminal helix in SopA play a crucial but distinct role in SopA function and plasmid maintenance. While the deletion of the last five residues in SopA does not affect its ability to bind the nucleoid or SopB, they severely affect the plasmid partitioning function. Further, we show that while mutations in certain polar residues in the C-terminal helix only mildly affect its localisation to the nucleoid, others cause defects in nsDNA binding and disrupt plasmid maintenance functions.

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来源期刊
Plasmid
Plasmid 生物-遗传学
CiteScore
4.70
自引率
3.80%
发文量
21
审稿时长
53 days
期刊介绍: Plasmid publishes original research on genetic elements in all kingdoms of life with emphasis on maintenance, transmission and evolution of extrachromosomal elements. Objects of interest include plasmids, bacteriophages, mobile genetic elements, organelle DNA, and genomic and pathogenicity islands.
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