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大肠杆菌的DnaA蛋白:在大肠杆菌染色体起源处的寡聚化是起始所必需的,且涉及特定的N端氨基酸。

DnaA Protein of Escherichia coli: oligomerization at the E. coli chromosomal origin is required for initiation and involves specific N-terminal amino acids.

作者信息

Simmons Lyle A, Felczak Magdalena, Kaguni Jon M

机构信息

Department of Biochemistry and Molecular Biology, Michigan State University, East Lansing, Michigan 48824-131, USA.

出版信息

Mol Microbiol. 2003 Aug;49(3):849-58. doi: 10.1046/j.1365-2958.2003.03603.x.

DOI:10.1046/j.1365-2958.2003.03603.x
PMID:12864864
Abstract

Iterated DnaA box sequences within the replication origins of bacteria and prokaryotic plasmids are recognized by the replication initiator, DnaA protein. At the E. coli chromosomal origin, oriC, DnaA is speculated to oligomerize to initiate DNA replication. We developed an assay of oligomer formation at oriC that relies on complementation between two dnaA alleles that are inactive by themselves. One allele is dnaA46; its inactivity at the non-permissive temperature is due to a specific defect in ATP binding. The second allele, T435K, does not support DNA replication because of its inability to bind to DnaA box sequences within oriC. We show that the T435K allele can complement the dnaA46(Ts) allele. The results support a model of oligomer formation in which DnaA box sequences of oriC are bound by DnaA46 to which T435K then binds to form an active complex. Relying on this assay, leucine 5, tryptophan 6 and cysteine 9 in a predicted alpha helix were identified that, when altered, interfere with oligomer formation. Glutamine 8 is additionally needed for oligomer formation on an oriC-containing plasmid, suggesting that the structure of the DnaA-oriC complex at the chromosomal oriC locus is similar but not identical to that assembled on a plasmid. Other evidence suggests that proline 28 of DnaA is involved in the recruitment of DnaB to oriC. These results provide direct evidence that DnaA oligomerization at oriC is required for initiation to occur.

摘要

细菌和原核生物质粒复制起点内的重复DnaA框序列可被复制起始蛋白DnaA识别。在大肠杆菌染色体起点oriC处,推测DnaA会寡聚化以启动DNA复制。我们开发了一种在oriC处检测寡聚体形成的方法,该方法依赖于两个自身无活性的dnaA等位基因之间的互补作用。一个等位基因是dnaA46;它在非允许温度下无活性是由于ATP结合存在特定缺陷。第二个等位基因T435K不支持DNA复制,因为它无法结合oriC内的DnaA框序列。我们发现T435K等位基因可以互补dnaA46(Ts)等位基因。这些结果支持了一种寡聚体形成模型,即oriC的DnaA框序列被DnaA46结合,然后T435K与之结合形成活性复合物。依靠这种检测方法,我们确定了预测的α螺旋中的亮氨酸5、色氨酸6和半胱氨酸9,当这些氨基酸发生改变时,会干扰寡聚体的形成。在含有oriC的质粒上形成寡聚体还需要谷氨酰胺8,这表明染色体oriC位点处DnaA-oriC复合物的结构与在质粒上组装的结构相似但不完全相同。其他证据表明,DnaA的脯氨酸28参与了将DnaB招募到oriC的过程。这些结果提供了直接证据,证明oriC处的DnaA寡聚化是启动复制所必需的。

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