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RsrI [N6-腺嘌呤] DNA甲基转移酶的体外底物结合及动力学

Substrate binding in vitro and kinetics of RsrI [N6-adenine] DNA methyltransferase.

作者信息

Szegedi S S, Reich N O, Gumport R I

机构信息

Department of Biochemistry and College of Medicine, 600 South Mathews Avenue, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.

出版信息

Nucleic Acids Res. 2000 Oct 15;28(20):3962-71. doi: 10.1093/nar/28.20.3962.

Abstract

RSR

I [N:6-adenine] DNA methyltransferase (M.RSR:I), which recognizes GAATTC and is a member of a restriction-modification system in Rhodobacter sphaeroides, was purified to >95% homogeneity using a simplified procedure involving two ion exchange chromatographic steps. Electrophoretic gel retardation assays with purified M.RSR:I were performed on unmethylated, hemimethylated, dimethylated or non-specific target DNA duplexes (25 bp) in the presence of sinefungin, a potent inhibitory analog of AdoMet. M. RSR:I binding was affected by the methylation status of the DNA substrate and was enhanced by the presence of the cofactor analog. M. RSR:I bound DNA substrates in the presence of sinefungin with decreasing affinities: hemimethylated > unmethylated > dimethylated >> non-specific DNA. Gel retardation studies with DNA substrates containing an abasic site substituted for the target adenine DNA provided evidence consistent with M.RSR:I extruding the target base from the duplex. Consistent with such base flipping, an approximately 1.7-fold fluorescence intensity increase was observed upon stoichiometric addition of M.RSR:I to hemimethylated DNA containing the fluorescent analog 2-aminopurine in place of the target adenine. Pre-steady-state kinetic and isotope- partitioning experiments revealed that the enzyme displays burst kinetics, confirmed the catalytic competence of the M.RSR:I-AdoMet complex and eliminated the possibility of an ordered mechanism where DNA is required to bind first. The equilibrium dissociation constants for AdoMet, AdoHcy and sinefungin were determined using an intrinsic tryptophan fluorescence-quenching assay.

摘要

RSR

I [N:6-腺嘌呤] DNA甲基转移酶(M.RSR:I)可识别GAATTC,是球形红细菌中限制修饰系统的成员之一。使用包含两个离子交换色谱步骤的简化程序,将其纯化至>95%的纯度。在强效AdoMet抑制类似物杀稻瘟菌素存在的情况下,对未甲基化、半甲基化、二甲基化或非特异性靶DNA双链体(25 bp)进行了纯化的M.RSR:I的电泳凝胶阻滞分析。M.RSR:I的结合受DNA底物甲基化状态的影响,并且辅因子类似物的存在会增强这种结合。在杀稻瘟菌素存在的情况下,M.RSR:I以递减的亲和力结合DNA底物:半甲基化>未甲基化>二甲基化>>非特异性DNA。对含有替代靶腺嘌呤的无碱基位点的DNA底物进行的凝胶阻滞研究提供了与M.RSR:I将靶碱基从双链体中挤出一致的证据。与这种碱基翻转一致,当将化学计量的M.RSR:I添加到含有荧光类似物2-氨基嘌呤代替靶腺嘌呤的半甲基化DNA中时,观察到荧光强度增加了约1.7倍。稳态前动力学和同位素分配实验表明该酶表现出爆发动力学,证实了M.RSR:I-AdoMet复合物的催化活性,并排除了需要先结合DNA的有序机制的可能性。使用内在色氨酸荧光猝灭分析测定了AdoMet、AdoHcy和杀稻瘟菌素的平衡解离常数。

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