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牛脱嘌呤内切核酸酶对DNA的切割机制及底物识别

Mechanism of DNA cleavage and substrate recognition by a bovine apurinic endonuclease.

作者信息

Sanderson B J, Chang C N, Grollman A P, Henner W D

机构信息

Division of Cancer Pharmacology, Dana-Farber Cancer Institute, Boston, Massachusetts.

出版信息

Biochemistry. 1989 May 2;28(9):3894-901. doi: 10.1021/bi00435a040.

Abstract

The location of the phosphodiester bond cleaved by homogeneous Mg2+-dependent apurinic endodeoxyribonuclease (EC 3.1.25.2; APE) of bovine calf thymus has been determined by using a 21-mer oligonucleotide containing a single central apurinic site as a substrate. A single product of cleavage consistent with cleavage of the oligonucleotide 5' to the apurinic site, and leaving a 3' hydroxyl group, was identified. This enzyme is, therefore, a class II apurinic endonuclease. The substrate specificities of this enzyme have been determined by using a variety of natural and synthetic DNAs or oligonucleotides containing base-free sites. Calf thymus APE has an absolute requirement for a double-stranded DNA and requires an abasic site as a substrate. The presence of a base fragment such as a urea residue, an alkoxyamine group attached to the C'-1 position of the abasic site, or reduction of the C'-1 aldehyde abolishes the APE activity of this enzyme. Synthetic abasic sites containing either ethylene glycol, propanediol, or tetrahydrofuran interphosphate linkages are excellent substrates for bovine APE. These results indicate that APE has no absolute requirement for either ring-opened or ring-closed deoxyribose moieties in its recognition of DNA-cleavage substrates. The enzyme may interact with the pocket in duplex DNA that results from the base loss or with the altered conformations of the phosphodiester backbone that result from the abasic site.

摘要

通过使用含有单个中心脱嘌呤位点的21聚体寡核苷酸作为底物,已确定了来自牛胸腺的依赖镁离子的均一性脱嘌呤内切脱氧核糖核酸酶(EC 3.1.25.2;APE)切割的磷酸二酯键的位置。鉴定出了一种切割产物,该产物与在脱嘌呤位点5'端切割寡核苷酸并留下3'羟基一致。因此,这种酶是II类脱嘌呤内切核酸酶。通过使用多种天然和合成的含有无碱基位点的DNA或寡核苷酸,已确定了该酶的底物特异性。牛胸腺APE对双链DNA有绝对需求,并且需要无碱基位点作为底物。诸如脲残基等碱基片段、连接在无碱基位点C'-1位置的烷氧基胺基团的存在,或C'-1醛的还原都会消除该酶的APE活性。含有乙二醇、丙二醇或四氢呋喃磷酸酯键的合成无碱基位点是牛APE的优良底物。这些结果表明,APE在识别DNA切割底物时对开环或闭环脱氧核糖部分没有绝对需求。该酶可能与因碱基缺失而在双链DNA中形成的口袋相互作用,或与因无碱基位点而导致的磷酸二酯主链构象改变相互作用。

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