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Novobiocin inhibits vaccinia virus replication by blocking virus assembly.新生霉素通过阻断病毒组装来抑制痘苗病毒复制。
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The genome of molluscum contagiosum virus: analysis and comparison with other poxviruses.传染性软疣病毒的基因组:分析及其与其他痘病毒的比较
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Characterization of a DNA topoisomerase encoded by Amsacta moore entomopoxvirus.摩尔粘虫昆虫痘病毒编码的一种DNA拓扑异构酶的特性分析
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Mutational analysis of 39 residues of vaccinia DNA topoisomerase identifies Lys-220, Arg-223, and Asn-228 as important for covalent catalysis.痘苗病毒DNA拓扑异构酶39个残基的突变分析确定赖氨酸-220、精氨酸-223和天冬酰胺-228对共价催化很重要。
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Histidine 265 is important for covalent catalysis by vaccinia topoisomerase and is conserved in all eukaryotic type I enzymes.组氨酸265对于痘苗拓扑异构酶的共价催化作用很重要,并且在所有真核生物I型酶中都保守存在。
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Mechanism of inhibition of vaccinia DNA topoisomerase by novobiocin and coumermycin.新生霉素和香豆霉素抑制痘苗病毒DNA拓扑异构酶的机制。
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传染性软疣病毒拓扑异构酶:纯化、活性及对抑制剂的反应

Molluscum contagiosum virus topoisomerase: purification, activities, and response to inhibitors.

作者信息

Hwang Y, Wang B, Bushman F D

机构信息

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

出版信息

J Virol. 1998 Apr;72(4):3401-6. doi: 10.1128/JVI.72.4.3401-3406.1998.

DOI:10.1128/JVI.72.4.3401-3406.1998
PMID:9525670
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC109833/
Abstract

Molluscum contagiosum virus (MCV), the only member of the Molluscipoxvirus genus, causes benign papules in healthy people but disfiguring lesions in immunocompromised patients. The sequence of MCV has been completed, revealing that MCV encodes a probable type I topoisomerase enzyme. All poxviruses sequenced to date also encode type I topoisomerases, and in the case of vaccinia virus the topoisomerase has been shown to be essential for replication. Thus, inhibitors of the MCV topoisomerase might be useful as antiviral agents. We have cloned the gene for MCV topoisomerase, overexpressed and purified the protein, and begun to characterize its activities in vitro. Like other eukaryotic type I topoisomerases, MCV topoisomerase can relax both positive and negative supercoils. An analysis of the cleavage of plasmid and oligonucleotide substrates indicates that cleavage by MCV topoisomerase is favored just 3' of the sequence 5' (T/C)CCTT 3', resulting in formation of a covalent bond to the 3' T residue, as with other poxvirus topoisomerases. We identified solution conditions favorable for activity and measured the rate of formation and decay of the covalent intermediate. MCV topoisomerase is sensitive to inhibition by coumermycin A1 (50% inhibitory concentration, 32 microM) but insensitive to five other previously reported topoisomerase inhibitors. This work provides the point of departure for studies of the mechanism of function of MCV topoisomerase and the development of medically useful inhibitors.

摘要

传染性软疣病毒(MCV)是软疣痘病毒属的唯一成员,可在健康人身上引起良性丘疹,但在免疫功能低下的患者中会导致毁容性病变。MCV的序列已完成,显示其编码一种可能的I型拓扑异构酶。迄今为止测序的所有痘病毒也都编码I型拓扑异构酶,就痘苗病毒而言,拓扑异构酶已被证明对复制至关重要。因此,MCV拓扑异构酶的抑制剂可能用作抗病毒剂。我们已克隆MCV拓扑异构酶基因,对该蛋白进行了过表达和纯化,并开始在体外对其活性进行表征。与其他真核I型拓扑异构酶一样,MCV拓扑异构酶可以松弛正超螺旋和负超螺旋。对质粒和寡核苷酸底物切割的分析表明,MCV拓扑异构酶的切割在序列5'(T/C)CCTT 3'的3'端附近最为有利,与其他痘病毒拓扑异构酶一样,会形成与3'端T残基的共价键。我们确定了有利于活性的溶液条件,并测量了共价中间体的形成和衰变速率。MCV拓扑异构酶对香豆霉素A1敏感(50%抑制浓度,32 microM),但对其他五种先前报道的拓扑异构酶抑制剂不敏感。这项工作为研究MCV拓扑异构酶的功能机制以及开发具有医学用途的抑制剂提供了出发点。