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仅具有一个ATP结合位点的人拓扑异构酶IIα异二聚体可以经历连续的催化循环。

A human topoisomerase II alpha heterodimer with only one ATP binding site can go through successive catalytic cycles.

作者信息

Skouboe Camilla, Bjergbaek Lotte, Oestergaard Vibe H, Larsen Morten K, Knudsen Birgitta R, Andersen Anni H

机构信息

Department of Molecular Biology, University of Aarhus, C. F. Møllers Allé, Building 130, Arhus C 8000, Denmark.

出版信息

J Biol Chem. 2003 Feb 21;278(8):5768-74. doi: 10.1074/jbc.M210332200. Epub 2002 Dec 11.

Abstract

Eukaryotic DNA topoisomerase II is a dimeric nuclear enzyme essential for DNA metabolism and chromosome dynamics. It changes the topology of DNA by coupling binding and hydrolysis of two ATP molecules to the transport of one DNA duplex through a temporary break introduced in another. During this process the structurally and functionally complex enzyme passes through a cascade of conformational changes, which requires intra- and intersubunit communication. To study the importance of ATP binding and hydrolysis in relation to DNA strand transfer, we have purified and characterized a human topoisomerase II alpha heterodimer with only one ATP binding site. The heterodimer was able to relax supercoiled DNA, although less efficiently than the wild type enzyme. It furthermore possessed a functional N-terminal clamp and was sensitive to ICRF-187. This demonstrates that human topoisomerase II alpha can pass through all the conformations required for DNA strand passage and enzyme resetting with binding and hydrolysis of only one ATP. However, the heterodimer lacked the normal stimulatory effect of DNA on ATP binding and hydrolysis as well as the stimulatory effect of ATP on DNA cleavage. The results can be explained in a model, where efficient catalysis requires an extensive communication between the second ATP and the DNA segment to be cleaved.

摘要

真核生物DNA拓扑异构酶II是一种二聚体核酶,对DNA代谢和染色体动态变化至关重要。它通过将两个ATP分子的结合与水解与一条DNA双链通过另一条链中引入的临时断裂处的转运相偶联,从而改变DNA的拓扑结构。在此过程中,结构和功能复杂的酶会经历一系列构象变化,这需要亚基内和亚基间的通讯。为了研究ATP结合和水解与DNA链转移的关系,我们纯化并鉴定了一种只有一个ATP结合位点的人拓扑异构酶IIα异二聚体。该异二聚体能够使超螺旋DNA松弛,尽管效率低于野生型酶。此外,它具有功能性的N端钳夹,并且对ICRF-187敏感。这表明人拓扑异构酶IIα仅通过结合和水解一个ATP就能经历DNA链通过和酶重置所需的所有构象。然而,该异二聚体缺乏DNA对ATP结合和水解的正常刺激作用以及ATP对DNA切割的刺激作用。这些结果可以用一个模型来解释,其中高效催化需要第二个ATP与待切割的DNA片段之间进行广泛的通讯。

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