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藤黄微球菌DNA促旋酶:活性成分及其DNA超螺旋模型

Micrococcus luteus DNA gyrase: active components and a model for its supercoiling of DNA.

作者信息

Liu L F, Wang J C

出版信息

Proc Natl Acad Sci U S A. 1978 May;75(5):2098-102. doi: 10.1073/pnas.75.5.2098.

Abstract

Two active components alpha and beta of micrococcus luteus DNA gyrase, of peptide weights of 115,000 and 97,000, respectively, have been purified. Each individual component exhibits little DNA gyrase activity; the ATP-dependent negative supercoiling of a covalently closed circular DNA duplex is catalyzed by a combination of the two. Covalent closure by Escherichia coli ligase of a circular DNA containing single-chain scissions, when carried out in the presence of a combination of the DNA gyrase components alpha and beta, gives a positively supercoiled DNA upon removal of the bound protein molecules. ATP was not present during the ligase treatment; therefore the positive supercoiling of DNA observed is a result of the binding of gyrase molecules, presumably as multi-subunit oligomers, during the ligation step. This is in contrast to the negative supercoiling of DNA catalyzed by gyrase in the presence of ATP. A model in which negative supercoiling of DNA is achieved by ATP-modulated repetitive wrapping of the DNA around gyrase is described. The model also suggests a plausible mode of action by which translocation of a DNA along its helix axis can be actively driven by an ATPase.

摘要

已纯化出藤黄微球菌DNA促旋酶的两种活性成分α和β,其肽分子量分别为115,000和97,000。每个单独的成分几乎没有DNA促旋酶活性;共价闭环DNA双链的ATP依赖性负超螺旋是由这两种成分的组合催化的。当在DNA促旋酶成分α和β的组合存在下进行时,大肠杆菌连接酶对含有单链切口的环状DNA进行共价封闭,去除结合的蛋白质分子后会产生正超螺旋DNA。连接酶处理过程中不存在ATP;因此观察到的DNA正超螺旋是促旋酶分子在连接步骤中结合的结果,推测是以多亚基寡聚体的形式。这与在ATP存在下促旋酶催化的DNA负超螺旋形成对比。描述了一种模型,其中DNA的负超螺旋是通过ATP调节的DNA围绕促旋酶的重复缠绕实现的。该模型还提出了一种合理的作用模式,通过这种模式,DNA沿其螺旋轴的转位可以由ATP酶主动驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e373/392498/ca9b197daff7/pnas00017-0051-a.jpg

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