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来自侧孢芽孢杆菌的一种核苷三磷酸依赖性脱氧核糖核酸酶。该酶的作用模式。

A nucleoside triphosphate-dependent deoxyribonuclease from Bacillus laterosporus. The mode of action of the enzyme.

作者信息

Anai M, Yamanaka M, Shibata T, Mihara T, Nishimoto T

出版信息

J Biochem. 1975 Jul;78(1):115-21.

PMID:1194248
Abstract

The acid-soluble products of exhaustive digestion of native DNA with Bacillus laterosporus DNase consist of 6.5% of mononucleotides and 93.5% of oligonucleotides with an average chain length of 3.2. The results of viscometric studies and inactivation of transforming DNA indicate the existence of acid-insoluble intermediates and the selective degradation of the population of substrate molecules rather than a random nucleolytic action. Furthermore, sucrose density gradient analysis of partially digested DNA showed that the initial DNA added as a substrate disappeared progressively during the reaction, being replaced by much more slowly sedimenting acid-insoluble materials, which were eventually degraded into acid-soluble end products during the reaction; products intermediate in size between these two components were not detectable. Studies with DNA labeled at the 3'-terminus indicate that Bacillus laterosporus DNase does not attack DNA from 3'-hydroxyl ends to yeild acid-soluble or acid-insoluble materials in a random manner. The results presented in this paper indicate that the nature of the attack of B. laterosporus nuclease is similar to that previously proposed for Micrococcus luteus DNase. The possibility of the sequential release of acid-insoluble intermediate fragments as well as acid-soluble products from the terminal portion of DNA by the enzyme is discussed.

摘要

用侧孢芽孢杆菌脱氧核糖核酸酶彻底消化天然DNA后得到的酸溶性产物,由6.5%的单核苷酸和93.5%的平均链长为3.2的寡核苷酸组成。粘度测定研究结果和转化DNA的失活表明存在酸不溶性中间体,且底物分子群体发生选择性降解,而非随机的核酸分解作用。此外,对部分消化的DNA进行蔗糖密度梯度分析表明,作为底物添加的初始DNA在反应过程中逐渐消失,取而代之的是沉降慢得多的酸不溶性物质,这些物质最终在反应过程中降解为酸溶性终产物;这两种成分之间大小的中间产物无法检测到。对3'-末端标记的DNA进行的研究表明,侧孢芽孢杆菌脱氧核糖核酸酶不会从3'-羟基末端以随机方式攻击DNA以产生酸溶性或酸不溶性物质。本文给出的结果表明,侧孢芽孢杆菌核酸酶的攻击性质与先前对藤黄微球菌脱氧核糖核酸酶提出的性质相似。文中还讨论了该酶从DNA末端部分依次释放酸不溶性中间片段以及酸溶性产物的可能性。

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