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CpG特异性甲基化酶SssI在Mg2+存在的情况下具有拓扑异构酶活性。

The CpG-specific methylase SssI has topoisomerase activity in the presence of Mg2+.

作者信息

Matsuo K, Silke J, Gramatikoff K, Schaffner W

机构信息

Institut für Molekularbiologie II, Universität Zürich, Switzerland.

出版信息

Nucleic Acids Res. 1994 Dec 11;22(24):5354-9. doi: 10.1093/nar/22.24.5354.

Abstract

A prokaryotic CpG-specific methylase from Spiroplasma, SssI methylase, is now widely used to study the effect of CpG methylation in mammalian cells, and can processively modify cytosines in CpG dinucleotides in the absence of Mg2+. In the presence of Mg2+, we found (i) that the methylation reaction is distributive rather than processive as a result of the decreased affinity of SssI methylase for DNA, and (ii) that a type I-like topoisomerase activity is present in SssI methylase preparations. This topoisomerase activity was still present in SssI methylase further purified by either SDS-polyacrylamide or isoelectric focusing gel electrophoresis. We show that methylase and topoisomerase activities are not functionally interdependent, since conditions exist where only one or the other enzymatic activity is detectable. The catalytic domains of SssI methylase and prokaryotic topoisomerases show similarity at the amino acid level, further supporting the idea that the topoisomerase activity is a genuine activity of SssI methylase. Mycoplasmas, including Spiroplasma, have the smallest genomes of all living organisms; thus, this condensation of two enzymatic activities into the same protein may be a result of genome economy, and may also have functional implications for the mechanism of methylation.

摘要

一种来自螺原体的原核生物CpG特异性甲基化酶SssI甲基化酶,如今被广泛用于研究CpG甲基化在哺乳动物细胞中的作用,并且在没有Mg2+的情况下能够连续修饰CpG二核苷酸中的胞嘧啶。在有Mg2+存在的情况下,我们发现:(i)由于SssI甲基化酶对DNA的亲和力降低,甲基化反应是分布性的而非连续性的;(ii)在SssI甲基化酶制剂中存在一种I型拓扑异构酶活性。通过SDS-聚丙烯酰胺或等电聚焦凝胶电泳进一步纯化的SssI甲基化酶中仍存在这种拓扑异构酶活性。我们表明甲基化酶和拓扑异构酶活性在功能上并非相互依赖,因为存在仅能检测到一种或另一种酶活性的情况。SssI甲基化酶和原核生物拓扑异构酶的催化结构域在氨基酸水平上显示出相似性,进一步支持了拓扑异构酶活性是SssI甲基化酶真正活性的观点。包括螺原体在内的支原体拥有所有生物体中最小的基因组;因此,将两种酶活性浓缩到同一蛋白质中可能是基因组经济性的结果,并且可能对甲基化机制也有功能上的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c86/332082/8d8f824bf975/nar00048-0217-a.jpg

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