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变铅青链霉菌DnaA蛋白-复制起点复合物的结构

Architecture of the Streptomyces lividans DnaA protein-replication origin complexes.

作者信息

Jakimowicz D, Majkadagger J, Konopa G, Wegrzyn G, Messer W, Schrempf H, Zakrzewska-Czerwińska J

机构信息

Ludwik Hirszfeld Institute of Immunology and Experimental Therapy, Polish Academy of Sciences, ul. Weigla 12, Wroclaw, 53-114, Poland.

出版信息

J Mol Biol. 2000 May 5;298(3):351-64. doi: 10.1006/jmbi.2000.3686.

Abstract

The Streptomyces oriC region contains two clusters of 19 DnaA boxes separated by a spacer (134 bp). The Streptomyces DnaA protein consists, like all other DnaA proteins, of four domains: domain III and the carboxyterminal part (domain IV) are responsible for binding of ATP and DNA, respectively. Binding of the DnaA protein to the entire oriC region analysed by electron microscopy showed that the DnaA protein forms separate complexes at each of the clusters of DnaA boxes, but not at the spacer separating them. In vivo mutational analysis revealed that the number of DnaA boxes and the presence of the spacer linking both groups of DnaA boxes seem to be important for a functional Streptomyces origin. We suggest that the arrangement of DnaA boxes allows the DNA-bound DnaA protein to induce bending and looping of the oriC region. As it was shown by electrophoretic mobility shift assay and "one hybrid system", two domains, I and III, facilitate interactions between DnaA molecules. We postulate that domain I and domain III could be involved in cooperativity at distant and at closely spaced DnaA boxes, respectively. The long domain II extends the range over which N termini (domain I) of DNA-bound DnaA protein can form dimers. Thus, interactions between DnaA molecules may bring two clusters of DnaA boxes separated by the spacer into functional contact by loop formation. Removal of the spacer region or deletion of domains I and II resulted, respectively, in nucleoprotein complexes which are not fully developed, or huge nucleoprotein aggregates.

摘要

链霉菌oriC区域包含两个由间隔序列(134 bp)隔开的19个DnaA框的簇。链霉菌DnaA蛋白与所有其他DnaA蛋白一样,由四个结构域组成:结构域III和羧基末端部分(结构域IV)分别负责ATP和DNA的结合。通过电子显微镜分析DnaA蛋白与整个oriC区域的结合情况,结果表明DnaA蛋白在每个DnaA框簇处形成单独的复合物,但在分隔它们的间隔序列处则不会形成。体内突变分析表明,DnaA框的数量以及连接两组DnaA框的间隔序列的存在对于功能性链霉菌起源似乎很重要。我们认为,DnaA框的排列方式使结合DNA的DnaA蛋白能够诱导oriC区域弯曲和成环。正如电泳迁移率变动分析和“单杂交系统”所显示的那样,结构域I和III促进了DnaA分子之间的相互作用。我们推测,结构域I和结构域III可能分别参与远距离和近距离间隔的DnaA框处的协同作用。长的结构域II扩展了结合DNA的DnaA蛋白的N末端(结构域I)形成二聚体的范围。因此,DnaA分子之间的相互作用可能通过环形成使由间隔序列隔开的两个DnaA框簇形成功能性接触。去除间隔序列区域或缺失结构域I和II分别导致核蛋白复合物发育不完全或形成巨大的核蛋白聚集体。

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