Suppr超能文献

大肠杆菌核糖核酸酶D。催化特性与底物特异性。

Escherichia coli RNase D. Catalytic properties and substrate specificity.

作者信息

Cudny H, Zaniewski R, Deutscher M P

出版信息

J Biol Chem. 1981 Jun 10;256(11):5633-7.

PMID:6263886
Abstract

The catalytic properties of purified RNase D were examined. The enzyme requires a divalent cation for activity, and this requirement can be satisfied by Mg2+, MN2+, or Co2+. RNase D is most active at pH 9.1-9.5, but this optimum may reflect an effect on the substrate as well as the enzyme. A variety of RNAs were tested as substrates for RNase D. Alteration of the 3'-terminal base has no effect on the rate of hydrolysis, whereas modification of the 3'-terminal sugar has a major effect. tRNA terminating with a 3'-phosphate is completely inactive as a substrate. The rate of hydrolysis of intact tRNA is very slow compared to tRNAs containing extra residues or compared to tRNAs from which part of the -C-C-A sequence has been removed. Oxidation of the terminal sugar, reduction of the dialdehyde with borohydride, or removal of the terminal AMP from intact tRNa increase the activity of the substrate. Addition of a second -C-C-A sequence gives an active substrate indicating that the relative resistance of intact tRNA to RNase D hydrolysis is not due to the sequence per se but to the structural environment of the 3'-terminus. Studies of the mode of action of RNase D indicate that it is an exonuclease which initiates hydrolysis at the 3'-terminus and removes 5'-mononucleotides in a random fashion. The requirements of RNase D for interaction with nucleic acids and for hydrolysis of various RNAs and the relation of these properties to its possible role as a processing nuclease is discussed.

摘要

对纯化的核糖核酸酶D的催化特性进行了研究。该酶的活性需要二价阳离子,镁离子、锰离子或钴离子均可满足这一需求。核糖核酸酶D在pH 9.1 - 9.5时活性最高,但这一最佳pH值可能反映了对底物以及酶本身的影响。对多种RNA作为核糖核酸酶D的底物进行了测试。3'-末端碱基的改变对水解速率没有影响,而3'-末端糖基的修饰则有重大影响。以3'-磷酸结尾的tRNA作为底物时完全无活性。与含有额外残基的tRNA或去除了部分-C-C-A序列的tRNA相比,完整tRNA的水解速率非常缓慢。末端糖基的氧化、用硼氢化钠还原二醛或从完整tRNA中去除末端AMP可提高底物的活性。添加第二个-C-C-A序列可产生有活性的底物,这表明完整tRNA对核糖核酸酶D水解的相对抗性并非源于序列本身,而是由于3'-末端的结构环境。对核糖核酸酶D作用模式的研究表明,它是一种核酸外切酶,从3'-末端开始水解,并以随机方式去除5'-单核苷酸。讨论了核糖核酸酶D与核酸相互作用以及水解各种RNA的需求,以及这些特性与其作为加工核酸酶可能发挥的作用之间的关系。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验