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大肠杆菌微型染色体复制:oriC起始的调控

E. coli minichromosome replication: regulation of initiation at oriC.

作者信息

Crooke E, Hwang D S, Skarstad K, Thöny B, Kornberg A

机构信息

Department of Biochemistry, Beckman Center, Stanford University School of Medicine, CA 94305.

出版信息

Res Microbiol. 1991 Feb-Apr;142(2-3):127-30. doi: 10.1016/0923-2508(91)90019-7.

Abstract

The initiation of Escherichia coli DNA replication is a highly regulated event with many parameters exerting positive and negative effects. The activity of the dnaA protein (the initiator protein) is profoundly influenced by the tight binding of the adenine nucleotides ATP and ADP. Further regulation of dnaA protein activity may occur through dnaA protein-cell membrane associations. A replicatively inactive form of dnaA protein is found aggregated with phospholipids; enzymatic treatment of the aggregates with phospholipase A2 or dnaK protein liberates dnaA protein with restored replication activity. Proper DNA structure is essential for replication. The energy stored in the DNA's supercoiling is crucial for dnaA protein's ability to initiate replication. Under conditions where strand-opening by dnaA protein is inhibited, such as low free superhelicity, an R-loop formed by RNA polymerase activates the origin at a distance by aiding strand-opening. A novel protein has been identified as a specific inhibitor of the initiation of DNA replication. This 33-kDa protein binds to the AT rich region of oriC and inhibits strand-opening by dnaA protein.

摘要

大肠杆菌DNA复制的起始是一个受到高度调控的事件,许多参数会产生正向和负向影响。DnaA蛋白(起始蛋白)的活性受到腺嘌呤核苷酸ATP和ADP紧密结合的深刻影响。DnaA蛋白活性的进一步调控可能通过DnaA蛋白与细胞膜的结合来实现。发现一种复制无活性形式的DnaA蛋白与磷脂聚集在一起;用磷脂酶A2或DnaK蛋白对聚集物进行酶处理可释放出具有恢复复制活性的DnaA蛋白。合适的DNA结构对复制至关重要。DNA超螺旋中储存的能量对于DnaA蛋白启动复制的能力至关重要。在DnaA蛋白的链打开受到抑制的条件下,如低自由超螺旋度,RNA聚合酶形成的R环通过辅助链打开在一定距离处激活起始位点。一种新的蛋白质已被鉴定为DNA复制起始的特异性抑制剂。这种33 kDa的蛋白质与oriC富含AT的区域结合,并抑制DnaA蛋白的链打开。

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