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胞嘧啶DNA甲基转移酶MspI的动力学机制

Kinetic mechanism of cytosine DNA methyltransferase MspI.

作者信息

Bhattacharya S K, Dubey A K

机构信息

Department of Biochemical Engineering & Biotechnology, Indian Institute of Technology-Delhi, New Delhi 110016, India.

出版信息

J Biol Chem. 1999 May 21;274(21):14743-9. doi: 10.1074/jbc.274.21.14743.

Abstract

A kinetic analysis of MspI DNA methyltransferase (M.MspI) is presented. The enzyme catalyzes methylation of lambda-DNA, a 50-kilobase pair linear molecule with multiple M.MspI-specific sites, with a specificity constant (kcat/KM) of 0.9 x 10(8) M-1 s-1. But the values of the specificity constants for the smaller DNA substrates (121 and 1459 base pairs (bp)) with single methylation target or with multiple targets (sonicated lambda-DNA) were less by an order of magnitude. Product inhibition of the M.MspI-catalyzed methylation reaction by methylated DNA is competitive with respect to DNA and noncompetitive with respect to S-adenosylmethionine (AdoMet). The S-adenosylhomocysteine inhibition of the methylation reaction is competitive with respect to AdoMet and uncompetitive with respect to DNA. The presteady state kinetic analysis showed a burst of product formation when AdoMet was added to the enzyme preincubated with the substrate DNA. The burst is followed by a constant rate of product formation (0.06 mol per mol of enzyme s-1) which is similar to catalytic constants (kcat = approximately 0.056 s-1) measured under steady state conditions. The isotope exchange in chasing the labeled methyltransferase-DNA complex with unlabeled DNA and AdoMet leads to a reduced burst as compared with the one involving chase with labeled DNA and AdoMet. The enzyme is capable of exchanging tritium at C-5 of target cytosine in the substrate DNA in the absence of cofactor AdoMet. The kinetic data are consistent with an ordered Bi Bi mechanism for the M.MspI-catalyzed DNA methylation where DNA binds first.

摘要

本文对MspI DNA甲基转移酶(M.MspI)进行了动力学分析。该酶催化λ-DNA的甲基化反应,λ-DNA是一种含有多个M.MspI特异性位点的50千碱基对线性分子,其特异性常数(kcat/KM)为0.9×10⁸ M⁻¹ s⁻¹。但是,对于具有单个甲基化靶点或多个靶点的较小DNA底物(121和1459碱基对(bp)),其特异性常数的值要低一个数量级。甲基化DNA对M.MspI催化的甲基化反应的产物抑制作用,相对于DNA是竞争性的,而相对于S-腺苷甲硫氨酸(AdoMet)是非竞争性的。S-腺苷同型半胱氨酸对甲基化反应的抑制作用,相对于AdoMet是竞争性的,而相对于DNA是非竞争性的。预稳态动力学分析表明,当将AdoMet添加到与底物DNA预孵育的酶中时,会有产物形成的爆发。爆发之后是恒定的产物形成速率(每摩尔酶每秒0.06摩尔),这与在稳态条件下测得的催化常数(kcat≈0.056 s⁻¹)相似。用未标记的DNA和AdoMet追踪标记的甲基转移酶-DNA复合物时的同位素交换,与用标记的DNA和AdoMet进行追踪相比,导致爆发减少。在没有辅因子AdoMet的情况下,该酶能够在底物DNA中靶胞嘧啶的C-5处交换氚。动力学数据与M.MspI催化的DNA甲基化的有序双底物双产物机制一致,其中DNA首先结合。

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