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痘苗病毒拓扑异构酶催化DNA转酯反应的机制:关键残基精氨酸-130、甘氨酸-132、酪氨酸-136和赖氨酸-167的催化作用

Mechanism of DNA transesterification by vaccinia topoisomerase: catalytic contributions of essential residues Arg-130, Gly-132, Tyr-136 and Lys-167.

作者信息

Wittschieben J, Shuman S

机构信息

Molecular Biology Program, Sloan-Kettering Institute, New York, NY 10021, USA.

出版信息

Nucleic Acids Res. 1997 Aug 1;25(15):3001-8. doi: 10.1093/nar/25.15.3001.

Abstract

Vaccinia topoisomerase, a eukaryotic type IB enzyme, catalyzes relaxation of supercoiled DNA by cleaving and rejoining DNA strands through a DNA- (3'-phosphotyrosyl)-enzyme intermediate. We have performed a kinetic analysis of mutational effects at four essential amino acids: Arg-130, Gly-132, Tyr-136 and Lys-167. Arg-130, Gly-132 and Lys-167 are conserved in all members of the type IB topoisomerase family. Tyr-136 is conserved in all poxvirus topoisomerases. We show that Arg-130 and Lys-167 are required for transesterification chemistry. Arg-130 enhances the rates of both cleavage and religation by 10(5). Lys-167 enhances the cleavage and religation reactions by 10(3) and 10(4), respectively. An instructive distinction between these two essential residues is that Arg-130 cannot be replaced by lysine, whereas substituting Lys-167 by arginine resulted in partial restoration of function relative to the alanine mutant. We propose that both basic residues interact directly with the scissile phosphate at the topoisomerase active site. Mutations at positions Gly-132 and Tyr-136 reduced the rate of strand cleavage by more than two orders of magnitude, but elicited only mild effects on religation rate. Gly-132 and Tyr-136 are suggested to facilitate a pre-cleavage activation step. The results of comprehensive mutagenesis of the vaccinia topoisomerase illuminate mechanistic and structural similarities to site-specific recombinases.

摘要

痘苗病毒拓扑异构酶是一种真核IB型酶,它通过DNA-(3'-磷酸酪氨酸)-酶中间体切割并重新连接DNA链,从而催化超螺旋DNA的松弛。我们对四个关键氨基酸(精氨酸-130、甘氨酸-132、酪氨酸-136和赖氨酸-167)的突变效应进行了动力学分析。精氨酸-130、甘氨酸-132和赖氨酸-167在IB型拓扑异构酶家族的所有成员中都是保守的。酪氨酸-136在所有痘病毒拓扑异构酶中都是保守的。我们发现精氨酸-130和赖氨酸-167是酯交换反应所必需的。精氨酸-130将切割和重新连接的速率提高了10^5倍。赖氨酸-167分别将切割和重新连接反应提高了10^3倍和10^4倍。这两个关键残基之间一个有启发性的区别是,精氨酸-130不能被赖氨酸取代,而用精氨酸取代赖氨酸-167相对于丙氨酸突变体导致功能部分恢复。我们提出这两个碱性残基都直接与拓扑异构酶活性位点的可切割磷酸基团相互作用。甘氨酸-132和酪氨酸-136位点的突变使链切割速率降低了两个以上数量级,但对重新连接速率仅产生轻微影响。推测甘氨酸-132和酪氨酸-136有助于切割前的激活步骤。痘苗病毒拓扑异构酶全面诱变的结果揭示了与位点特异性重组酶在机制和结构上的相似性。

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