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在缺乏DnaA蛋白的情况下大肠杆菌的细胞周期和质粒R1的复制周期。

The E. coli cell cycle and the plasmid R1 replication cycle in the absence of the DnaA protein.

作者信息

Bernander R, Dasgupta S, Nordström K

机构信息

Department of Microbiology, Uppsala University, Sweden.

出版信息

Cell. 1991 Mar 22;64(6):1145-53. doi: 10.1016/0092-8674(91)90269-5.

Abstract

In E. coli strain EC::71CW chromosome replication is under the control of the R1 miniplasmid pOU71. A dnaA850::Tn10 derivative of EC::71CW was viable, which confirmed that R1 can replicate in the absence of the DnaA protein. The frequency of initiation of replication was, however, lowered and cell division was severely disturbed due to underreplication of the chromosome. Both replication and cell division could be restored to normal by increasing the production of RepA, the rate-limiting protein for initiation of replication from the integrated R1 origin. Therefore, the RepA protein seems to compensate for the absence of DnaA in the initiation of replication and assembly of replisomes. The role of the DnaA protein in the initiation of DNA replication, and as an overall regulator of the chromosome replication and cell division cycles of E. coli, is discussed in view of these results.

摘要

在大肠杆菌菌株EC::71CW中,染色体复制受R1小质粒pOU71的控制。EC::71CW的dnaA850::Tn10衍生物是有活力的,这证实了R1在没有DnaA蛋白的情况下也能复制。然而,由于染色体复制不足,复制起始频率降低,细胞分裂受到严重干扰。通过增加RepA的产量可以使复制和细胞分裂恢复正常,RepA是从整合的R1起点起始复制的限速蛋白。因此,RepA蛋白似乎在复制起始和复制体组装过程中弥补了DnaA的缺失。鉴于这些结果,讨论了DnaA蛋白在大肠杆菌DNA复制起始以及作为染色体复制和细胞分裂周期的整体调节因子的作用。

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