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首页> 外文期刊>Journal of bacteriology >Delta dnaK52 mutants of Escherichia coli have defects in chromosome segregation and plasmid maintenance at normal growth temperatures.
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Delta dnaK52 mutants of Escherichia coli have defects in chromosome segregation and plasmid maintenance at normal growth temperatures.

机译:大肠埃希氏菌的dnaK52突变体在正常生长温度下染色体分离和质粒维持方面存在缺陷。

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Major heat shock proteins, such as the Escherichia coli DnaK protein, not only are required for cell growth after heat shock but seem to possess important functions in cellular metabolism at normal growth temperatures as well. E. coli delta dnaK52 mutants have severe cellular defects at 30 degrees C, one of which is in cell division (B. Bukau and G. C. Walker, J. Bacteriol, 171:2337-2346, 1989). Here we show that at 30 degrees C, delta dnaK52 mutants have defects in chromosome segregation and in maintenance of low-copy-number plasmids. Fluorescence microscopic analysis revealed that chromosomes were frequently lacking at peripheries of cell filaments of delta dnaK52 mutants and clustered at other locations. In other parts of the cell filaments, chromosomes were apparently normally distributed and they were also present in most of the small cells found in populations of delta dnaK52 cells. These defects might be at the level of DNA replication, since delta dnaK52 mutants have a threshold lower rate of DNA synthesis than wild-type cells. Chromosome segregation defects of delta dnaK52 mutants were also observed in an rnh dnaA mutant background, in which initiation of DNA replication is DnaA-oriC independent. We also found that low-copy-number P1 miniplasmids could not be stably maintained in delta dnaK52 mutants at 30 degrees C. delta par P1 miniplasmids that carry the P1-encoded rep functions required for their replication but lack the P1-encoded par functions required for faithful partitioning of the plasmids during cell division were also unstable in delta dnaK52 mutants. Taken together, our results indicate important, although not absolutely essential, functions for DnaK at 30 degrees C in one or more processes necessary for correct replication and/or partitioning of chromosomes and P1 miniplasmids. Furthermore, we found that P1 miniplasmids were also highly unstable in dnaJ259 mutants, indicating a role for the DnaJ heat shock protein in maintenance of these plasmids.
机译:主要的热激蛋白,例如大肠杆菌DnaK蛋白,不仅是热激后细胞生长所必需的,而且在正常生长温度下似乎也具有重要的细胞代谢功能。大肠杆菌δdnaK52突变体在30℃具有严重的细胞缺陷,其中之一是细胞分裂(B.Bukau和G.C.Walker,细菌学杂志,171:2337-2346,1989)。在这里,我们显示在30摄氏度时,dnaK52突变体在染色体分离和低拷贝数质粒的维持中存在缺陷。荧光显微镜分析显示,在dnaK52突变体的细胞细丝周围通常缺少染色体,并且在其他位置聚集。在细胞细丝的其他部分,染色体显然呈正态分布,它们也存在于δdnaK52细胞群中发现的大多数小细胞中。这些缺陷可能在DNA复制的水平上,因为dnaK52突变体的DNA合成速率比野生型细胞低。在rnh dnaA突变体背景下也观察到了δdnaK52突变体的染色体分离缺陷,其中DNA复制的起始与DnaA-oriC无关。我们还发现,低拷贝数的P1小质粒不能在30摄氏度的dna dnaK52突变体中稳定地维持。三角洲par P1小质粒具有复制所需的P1编码的rep功能,但缺少所需的P1编码的par功能对于质粒分裂过程中质粒的忠实分配,在dnaK52突变体中也不稳定。两者合计,我们的结果表明,在30摄氏度下,DnaK在正确复制和/或分配染色体和P1小质粒所必需的一个或多个过程中具有重要的功能,尽管并非绝对必要。此外,我们发现P1小质粒在dnaJ259突变体中也高度不稳定,表明DnaJ热激蛋白在这些质粒的维持中具有作用。

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