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首页> 外文期刊>The Biochemical Journal >Impaired chromosome partitioning and synchronization of DNA replication initiation in an insertional mutant in the Vibrio harveyi cgtA gene coding for a common GTP-binding protein.
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Impaired chromosome partitioning and synchronization of DNA replication initiation in an insertional mutant in the Vibrio harveyi cgtA gene coding for a common GTP-binding protein.

机译:在编码通用GTP结合蛋白的哈维弧菌cgtA基因的插入突变体中,染色体分配受损和染色体复制复制同步受损。

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摘要

The Vibrio harveyi cgtA gene product belongs to a subfamily of small GTP-binding proteins, called Obg-like proteins. Members of this subfamily are present in diverse organisms ranging from bacteria to humans. On the other hand, the functions of these proteins in the regulation of cellular processes are largely unknown. Genes coding for these proteins are essential in almost all bacteria investigated thus far. However, a viable V. harveyi insertional mutant in the cgtA gene was described recently. Therefore, this mutant gives a unique opportunity to study functions of a member of the subfamily of Obg-like proteins. Here we demonstrate that the mutant cells often form long filaments with expanded, non-partitioned or rarely partitioned chromosomes. Such a phenotype suggests impairment of the mechanism of chromosome partition. Flow cytometric studies revealed that synchronization of chromosome replication initiation is also significantly disturbed in the cgtA mutant. Moreover, in contrast to wild-type V. harveyi, inhibition of chromosome replication and/or of cell division in the mutant bacteria caused significant increase in the number of large cells, suggesting that the cgtA gene product may be involved in the coupling of cell growth to chromosome replication and cell division. These results indicate that CgtA, an Obg-like GTP-binding protein, plays an important role in the regulation of chromosomal functions.
机译:harveyi弧菌cgtA基因产物属于小的GTP结合蛋白亚家族,称为Obg样蛋白。该亚科的成员存在于从细菌到人类的多种生物中。另一方面,这些蛋白质在调节细胞过程中的功能尚不清楚。迄今为止,几乎所有细菌都对编码这些蛋白质的基因至关重要。然而,最近描述了在cgtA基因中的可行的哈维氏弧菌插入突变体。因此,该突变体为研究Obg样蛋白亚家族成员的功能提供了独特的机会。在这里,我们证明了突变细胞通常会形成长丝,带有扩张的,未分区的或很少分区的染色体。这种表型表明染色体分配机制的损害。流式细胞术研究表明,染色体复制起始的同步在cgtA突变体中也受到显着干扰。此外,与野生型哈氏弧菌相反,突变细菌中染色体复制和/或细胞分裂的抑制导致大细胞数量的显着增加,这表明cgtA基因产物可能参与细胞的偶联。生长到染色体复制和细胞分裂。这些结果表明,CgtA,一种类似Obg的GTP结合蛋白,在调节染色体功能中起重要作用。

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