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大肠杆菌中对脱嘌呤位点具有特异性的主要核酸内切酶(核酸内切酶VI)的特性。从DNA中切除脱嘌呤位点的机制。

Properties of the main endonuclease specific for apurinic sites of Escherichia coli (endonuclease VI). Mechanism of apurinic site excision from DNA.

作者信息

Gossard F, Verly W G

出版信息

Eur J Biochem. 1978 Jan 16;82(2):321-32. doi: 10.1111/j.1432-1033.1978.tb12026.x.

Abstract

The main endonuclease for apurinic sites of Escherichia coli (endonuclease VI) has no action on normal strands, either in double-stranded or single-stranded DNA, or on alkylated sites. The enzyme has an optimum pH at 8.5, is inhibited by EDTA and needs Mg2+ for its activity; it has a half-life of 7 min at 40 degrees C. A purified preparation of endonuclease VI, free of endonuclease II activity, contained exonuclease III; the two activities (endonuclease VI and exonuclease III) copurified and were inactivated with the same half-lives at 40 degrees C. Endonuclease VI cuts the DNA strands on the 5' side of the apurinic sites giving a 3'-OH and a 5'-phosphate, and exonuclease III, working afterwards, leaves the apurinic site in the DNA molecule; this apurinic site can subsequently be removed by DNA polymerase I. The details of the excision of apurinic sites in vitro from DNA by endonuclease VI/exonuclease III, DNA polymerase I and ligase, are described; it is suggested that exonuclease III works as an antiligase to facilitate the DNA repair.

摘要

大肠杆菌无嘌呤位点的主要内切核酸酶(内切核酸酶VI)对正常链无作用,无论是双链还是单链DNA,对烷基化位点也无作用。该酶的最适pH值为8.5,受EDTA抑制,其活性需要Mg2+;在40℃下半衰期为7分钟。一种不含内切核酸酶II活性的纯化内切核酸酶VI制剂含有外切核酸酶III;这两种活性(内切核酸酶VI和外切核酸酶III)共同纯化,在40℃下以相同的半衰期失活。内切核酸酶VI在无嘌呤位点的5'侧切割DNA链,产生一个3'-OH和一个5'-磷酸,随后起作用的外切核酸酶III使DNA分子中的无嘌呤位点保留;这个无嘌呤位点随后可被DNA聚合酶I去除。描述了内切核酸酶VI/外切核酸酶III、DNA聚合酶I和连接酶在体外从DNA中切除无嘌呤位点的详细过程;有人提出外切核酸酶III作为一种抗连接酶起作用,以促进DNA修复。

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