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大肠杆菌UvrAB蛋白复合物的解旋酶特性

Helicase properties of the Escherichia coli UvrAB protein complex.

作者信息

Oh E Y, Grossman L

出版信息

Proc Natl Acad Sci U S A. 1987 Jun;84(11):3638-42. doi: 10.1073/pnas.84.11.3638.

Abstract

The Escherichia coli UvrA protein has an associated ATPase activity with a turnover number affected by the presence of UvrB protein as well as by DNA. Specifically, the structure of DNA significantly influences the turnover rate of the UvrAB ATPase activity. Double-stranded DNA maximally activates the turnover rate 10-fold whereas single-stranded DNA maximally activates the turnover rate 20-fold, suggesting that the mode of interaction of UvrAB protein with different DNAs is distinctive. We have previously shown that the UvrAB protein complex, driven by the binding energy of ATP, can locally unwind supercoiled DNA. The nature of the DNA unwinding activity and single-stranded DNA activation of ATPase activity suggests potential helicase activity. In the presence of a number of helicase substrates, the UvrAB complex, indeed, manifests a strand-displacement activity--unwinding short duplexes and D-loop DNA, thereby generating component DNA structures. The energy for the activity is derived from ATP or dATP hydrolysis. Unlike the E. coli DnaB, the UvrAB helicase is sensitive to UV-induced photoproducts.

摘要

大肠杆菌UvrA蛋白具有相关的ATP酶活性,其周转数受UvrB蛋白的存在以及DNA的影响。具体而言,DNA的结构显著影响UvrAB ATP酶活性的周转速率。双链DNA最大程度地激活周转速率达10倍,而单链DNA最大程度地激活周转速率达20倍,这表明UvrAB蛋白与不同DNA的相互作用模式是独特的。我们之前已经表明,由ATP的结合能驱动的UvrAB蛋白复合物可以局部解开超螺旋DNA。DNA解旋活性的性质以及ATP酶活性的单链DNA激活表明其具有潜在的解旋酶活性。在存在多种解旋酶底物的情况下,UvrAB复合物确实表现出链置换活性——解开短双链体和D环DNA,从而产生组成性DNA结构。该活性的能量来自ATP或dATP水解。与大肠杆菌DnaB不同,UvrAB解旋酶对紫外线诱导的光产物敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de26/304930/73d0ab67cab9/pnas00276-0111-a.jpg

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