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果蝇拓扑异构酶II对双链DNA的单链DNA切割反应。

Single strand DNA cleavage reaction of duplex DNA by Drosophila topoisomerase II.

作者信息

Lee M P, Sander M, Hsieh T S

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710.

出版信息

J Biol Chem. 1989 Aug 15;264(23):13510-8.

PMID:2547764
Abstract

A unique reaction for type II DNA topoisomerase is its cleavage of a pair of DNA strands in concert. We show however, that in a reaction mixture containing a molar excess of EDTA over Mg2+, or when Mg2+ is substituted by Ca2+, Mn2+, or Co2+, the enzyme cleaves only one rather than both strands. These results suggest that the divalent cations may play an important role in coordinating the two subunits of DNA topoisomerase II during the strand cleavage reaction. The single strand and the double strand cleavage reactions are similar in the following aspects: both require the addition of a protein denaturant, can be reversed by low temperature or high salt, and a topoisomerase II molecule is attached covalently to the 5' phosphoryl end of each broken DNA strand. Furthermore, the single strand cleavage sites share a similar sequence preference with double strand cleavage sites. There is, however, a strand bias for the single strand cleavage reaction. We show also that under single strand cleavage conditions, topoisomerase II still possesses a low level of double strand passage activity: it can introduce topological knots into both covalently closed or nicked DNA rings, and change the linking number of a plasmid DNA by steps of two. The implication of this observation on the sequential cleavage of the two strands of the DNA duplex during the normal DNA double strand passage process catalyzed by type II DNA topoisomerases is discussed.

摘要

II型DNA拓扑异构酶的一个独特反应是其协同切割一对DNA链。然而,我们发现,在反应混合物中,当EDTA的摩尔量超过Mg2+,或者当Mg2+被Ca2+、Mn2+或Co2+取代时,该酶只切割一条链而非两条链。这些结果表明,二价阳离子可能在链切割反应过程中协调DNA拓扑异构酶II的两个亚基发挥重要作用。单链切割反应和双链切割反应在以下方面相似:两者都需要添加蛋白质变性剂,可通过低温或高盐逆转,并且一个拓扑异构酶II分子共价连接到每条断裂DNA链的5'磷酸末端。此外,单链切割位点与双链切割位点具有相似的序列偏好。然而,单链切割反应存在链偏好性。我们还表明,在单链切割条件下,拓扑异构酶II仍然具有低水平的双链通过活性:它可以将拓扑结引入共价闭合或带切口的DNA环中,并以每次两个步骤改变质粒DNA的连环数。本文讨论了这一观察结果对II型DNA拓扑异构酶催化的正常DNA双链通过过程中DNA双链两条链的顺序切割的意义。

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