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首页> 外文期刊>The Journal of biological chemistry >Separate and Combined Biochemical Activities of the Subunits of a Naturally Split Reverse Gyrase
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Separate and Combined Biochemical Activities of the Subunits of a Naturally Split Reverse Gyrase

机译:自然分裂逆转酶的亚基分离和组合生化活性

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Reverse gyrase reanneals denatured DNA and induces positive supercoils in DNA, an activity that is critical for life at very high temperatures. Positive supercoiling occurs by a poorly understood mechanism involving the coordination of a topoisomerase domain and a helicase-like domain. In the parasitic archaeon Nanoarchaeum equitans, these domains occur as separate subunits. We express the subunits, and characterize them both in isolation and as a heterodimer. Each subunit tightly associates and interacts with the other. The topoisomerase subunit enhances the catalytic specificity of the DNA-dependent ATPase activity of the helicase-like subunit, and the helicase-like subunit inhibits the relaxation activity of the topoisomerase subunit while promoting positive supercoiling. DNA binding preference for both single- and double-stranded DNA is partitioned between the subunits. Based on a sensitive topological shift assay, the binding preference of helicase-like subunit for underwound DNA is modulated by its binding with ATP cofactor. These results provide new insight into the mechanism of positive supercoil induction by reverse gyrase.
机译:反向乙基酶成果抗变性DNA,并在DNA中诱导阳性超硬壳,这是对非常高的温度终生至关重要的活性。通过涉及拓扑异构酶结构域和螺旋酶样结构域的协调的良好机制发生正超级铜。在寄生archaeon纳米archaeum arearans中,这些域将作为单独的亚基发生。我们表达亚基,并以分离和异二聚体表征它们。每个亚基都紧紧地联系并与另一个相互作用。拓扑异构酶亚基增强了螺旋酶样亚基的DNA依赖性ATP酶活性的催化特异性,并且螺旋酶样亚基抑制了拓扑异构酶亚基的松弛活性,同时促进正面超铜。单链和双链DNA的DNA结合偏好在亚基之间分配。基于敏感的拓扑换档测定,通过与ATP辅因子的结合来调节底族DNA的螺旋酶样亚基的结合偏好。这些结果对反旋毒酶的正超燃料诱导机理提供了新的洞察。

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