首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >A multifunctional plasmid-encoded replication initiation protein both recruits and positions an active helicase at the replication origin.
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A multifunctional plasmid-encoded replication initiation protein both recruits and positions an active helicase at the replication origin.

机译:多功能质粒编码的复制起始蛋白既可以在复制起点处募集活性螺旋酶,又可以将其定位在复制起点上。

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摘要

The DnaA replication initiation protein has been shown to be essential for DNA strand opening at the AT-rich region of the replication origin of the Escherichia coli chromosome as well as serving to recruit and position the DnaB replicative helicase at this open region. Homologues of the dnaA gene of E. coli have been found in most bacterial species, and the DnaA protein has been shown to be required for the initiation of replication of both chromosomal and plasmid DNA. For several plasmid elements it has been found that a plasmid-encoded initiation protein is required along with the DnaA protein to bring about opening of the AT-rich region at the replication origin. The broad host range plasmid RK2 encodes two forms of its replication initiation protein (TrfA-33 and TrfA-44) that differ by an additional 98 aa at the N terminus of the larger (TrfA-44) form. Both forms initiate replication of RK2 in E. coli in vitro by a DnaA-dependent mechanism. However, as shown in this study, TrfA-44 specifically interacts with the DnaB replicative helicase of Pseudomonas putida and Pseudomonas aeruginosa and initiates the formation of a prepriming open complex in the absence of DnaA protein. Thus, the TrfA-44 initiation protein has the multifunctional properties of recruiting and positioning an active form of the DnaB helicase at the RK2 replication origin by a DnaA-independent process. This unique property for a replication initiation protein undoubtedly plays an important role in extending the host range of the RK2 antibiotic resistance plasmid.
机译:已经显示,DnaA复制起始蛋白对于在大肠杆菌染色体复制起点的AT富集区的DNA链开放必不可少,并且对于在该开放区募集DnaB复制解旋酶并将其定位。在大多数细菌物种中都发现了大肠杆菌dnaA基因的同源物,并且已证明DnaA蛋白是启动染色体和质粒DNA复制的必需物质。对于几种质粒元件,已经发现,与DnaA蛋白一起需要质粒编码的起始蛋白,以在复制起点处引起富含AT的区域的开放。宿主范围广的质粒RK2编码其复制起始蛋白的两种形式(TrfA-33和TrfA-44),在较大形式(TrfA-44)的N端相差98个氨基酸。两种形式均通过DnaA依赖性机制启动RK2在大肠杆菌中的体外复制。但是,如本研究中所示,TrfA-44与恶臭假单胞菌和铜绿假单胞菌的DnaB复制解旋酶发生特异性相互作用,并在不存在DnaA蛋白的情况下启动了预启动开放复合物的形成。因此,TrfA-44起始蛋白具有通过不依赖DnaA的过程在RK2复制起点募集和定位DnaB解旋酶活性形式的多功能特性。复制起始蛋白的这种独特性质无疑在扩展RK2抗生素抗性质粒的宿主范围中起重要作用。

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