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大肠杆菌DnaA蛋白P环基序中的中心赖氨酸对于从染色体复制起点oriC和F因子复制起点oriS起始DNA复制至关重要,但对于从P1质粒复制起点oriR起始复制则可有可无。

The central lysine in the P-loop motif of the Escherichia coli DnaA protein is essential for initiating DNA replication from the chromosomal origin, oriC, and the F factor origin, oriS, but is dispensable for initiation from the P1 plasmid origin, oriR.

作者信息

Skovgaard O, Olesen K, Wright A

机构信息

Department of Life Sciences and Chemistry, Roskilde University, Denmark.

出版信息

Plasmid. 1998 Sep;40(2):91-9. doi: 10.1006/plas.1998.1349.

Abstract

The Escherichia coli DnaA protein is essential for initiation of DNA replication from the chromosomal origin, oriC, and from certain plasmid origins such as oriR of P1, oriS of F, and ori of pSCS101. The DnaA protein binds ATP with high affinity and contains a P-loop motif assumed to be the binding site. Three mutations in the E. coli dnaA gene were constructed by oligonucleotide-directed mutagenesis that changed amino acids in the P-loop. A DnaA protein, K178T, in which the central lysine was changed to the smaller amino acid threonine, was able to initiate DNA replication from P1 oriR, but was unable to initiate replication from E. coli oriC or F oriS in vivo. Mutant and wild-type DnaA proteins were overexpressed, partially purified, and tested for replication activity in vitro. The K178T DnaA protein could initiate replication from oriR, although with a decreased activity compared to the wild-type DnaA protein. No replication activity was detected for this mutant protein from oriC. The different responses of the oriR and oriC replicons to the K178T DnaA protein indicate that the role of DnaA is different in the two systems.

摘要

大肠杆菌DnaA蛋白对于从染色体复制起点oriC以及从某些质粒复制起点(如P1的oriR、F的oriS和pSCS101的ori)起始DNA复制至关重要。DnaA蛋白以高亲和力结合ATP,并且含有一个假定为结合位点的P环基序。通过寡核苷酸定向诱变构建了大肠杆菌dnaA基因中的三个突变,这些突变改变了P环中的氨基酸。一种DnaA蛋白K178T,其中央赖氨酸被较小的氨基酸苏氨酸取代,能够从P1 oriR起始DNA复制,但在体内无法从大肠杆菌oriC或F oriS起始复制。突变型和野生型DnaA蛋白被过量表达、部分纯化,并在体外测试其复制活性。K178T DnaA蛋白能够从oriR起始复制,尽管与野生型DnaA蛋白相比活性有所降低。未检测到该突变蛋白从oriC的复制活性。oriR和oriC复制子对K178T DnaA蛋白的不同反应表明DnaA在这两个系统中的作用不同。

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