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DNA接触可刺激痘病毒拓扑异构酶的催化作用。

DNA contacts stimulate catalysis by a poxvirus topoisomerase.

作者信息

Hwang Y, Burgin A, Bushman F

机构信息

Salk Institute for Biological Studies, La Jolla, California 92037, USA.

出版信息

J Biol Chem. 1999 Apr 2;274(14):9160-8. doi: 10.1074/jbc.274.14.9160.

DOI:10.1074/jbc.274.14.9160
PMID:10092587
Abstract

Eukaryotic type 1B topoisomerases act by forming covalent enzyme-DNA intermediates that transiently nick DNA and thereby release DNA supercoils. Here we present a study of the topoisomerase encoded by the pathogenic poxvirus molluscum contagiosum. Our studies of DNA sites favored for catalysis reveal a larger recognition site than the 5'-(T/C)CCTT-3' sequence previously identified for poxvirus topoisomerases. Separate assays of initial DNA binding and covalent complex formation revealed that different DNA sequences were important for each reaction step. The location of the protein-DNA contacts was mapped by analyzing mutant sites and inosine-substituted DNAs. Some of the bases flanking the 5'-(T/C)CCTT-3' sequence were selectively important for covalent complex formation but not initial DNA binding. Interactions important for catalysis were probed with 5'-bridging phosphorothiolates at the site of strand cleavage, which permitted covalent complex formation but prevented subsequent religation. Kinetic studies revealed that the flanking sequences that promoted recovery of covalent complexes increased initial cleavage instead of inhibiting resealing of the nicked intermediate. These data 1) indicate that previously unidentified DNA contacts can accelerate a step between initial binding and covalent complex formation and 2) help specify models for conformational changes promoting catalysis.

摘要

真核1B型拓扑异构酶通过形成共价酶-DNA中间体发挥作用,该中间体可短暂切割DNA,从而释放DNA超螺旋。在此,我们展示了对致病性痘病毒传染性软疣编码的拓扑异构酶的一项研究。我们对有利于催化的DNA位点的研究揭示了一个比先前为痘病毒拓扑异构酶确定的5'-(T/C)CCTT-3'序列更大的识别位点。对初始DNA结合和共价复合物形成的单独测定表明,不同的DNA序列对每个反应步骤都很重要。通过分析突变位点和肌苷取代的DNA来绘制蛋白质-DNA接触的位置。5'-(T/C)CCTT-3'序列侧翼的一些碱基对共价复合物形成具有选择性重要性,但对初始DNA结合不重要。在链切割位点用5'-桥连硫代磷酸酯探测对催化重要的相互作用,这允许共价复合物形成但阻止随后的重新连接。动力学研究表明,促进共价复合物恢复的侧翼序列增加了初始切割,而不是抑制带切口中间体的重新封闭。这些数据1)表明以前未识别的DNA接触可以加速初始结合和共价复合物形成之间的一个步骤,并且2)有助于确定促进催化的构象变化模型。

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DNA contacts stimulate catalysis by a poxvirus topoisomerase.DNA接触可刺激痘病毒拓扑异构酶的催化作用。
J Biol Chem. 1999 Apr 2;274(14):9160-8. doi: 10.1074/jbc.274.14.9160.
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DNA contacts by protein domains of the molluscum contagiosum virus type-1B topoisomerase.1B型传染性软疣病毒拓扑异构酶的蛋白质结构域与DNA的相互作用。
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