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氮芥在胞嘧啶 - 胞嘧啶错配位点形成DNA链间交联:动力学及序列依赖性

DNA interstrand crosslink formation by mechlorethamine at a cytosine-cytosine mismatch pair: kinetics and sequence dependence.

作者信息

Romero R M, Rojsitthisak P, Haworth I S

机构信息

Department of Pharmaceutical Sciences, University of Southern California, Los Angeles 90089-9121, USA.

出版信息

Arch Biochem Biophys. 2001 Feb 15;386(2):143-53. doi: 10.1006/abbi.2000.2198.

Abstract

Expansion of the triplet repeat DNA sequence d[CGG]n.d[CCG]n is a characteristic of Fragile X syndrome, a human neurodegenerative disease. Stable intrastrand conformations formed by both d[CGG]n and d[CCG]n, and involving G-G and C-C mismatch pairs, respectively, are believed to be of importance in the development of the disease. We have shown previously that C-C mismatch pairs can be crosslinked covalently by mechlorethamine, a nitrogen mustard alkylating agent, and hence this reaction may be of value as a probe for conformers of d[CCG]n. To characterize the mechlorethamine C-C crosslink reaction further, here we report the kinetics and sequence dependence of formation of the crosslink species, using a series of model duplexes. The rate of reaction depends on the base sequence proximal to the C-C mismatch pair. Hence, in 19mer duplexes containing a central d[M4M3M2M1Cn1n2n3n4].d[N4N3N2N1Cm1m2m3m4] sequence, where M-m and N-n are complementary base pairs, the amount of crosslink increased with increasing G-C content of the eight base pairs neighboring the C-C mismatch and with the proximity of the G-C pairs to the C-C mismatch. Molecular dynamics simulations of the solvated duplexes provided an explanation of these data. Hence, for a C-C pair flanked by G-C base pairs the mismatched cytosine bases remain stacked within the duplex, but for a C-C pair flanked by A-T base pairs, the simulations suggested local opening of the duplex around the C-C pair, making it a less effective target for mechlorethamine.

摘要

三联体重复DNA序列d[CGG]n.d[CCG]n的扩增是脆性X综合征(一种人类神经退行性疾病)的特征。由d[CGG]n和d[CCG]n形成的稳定链内构象,分别涉及G-G和C-C错配碱基对,被认为在该疾病的发展中起重要作用。我们之前已经表明,C-C错配碱基对可以被氮芥类烷基化剂氮芥共价交联,因此该反应可能作为d[CCG]n构象异构体的探针具有价值。为了进一步表征氮芥与C-C的交联反应,我们在此报告了使用一系列模型双链体形成交联物种的动力学和序列依赖性。反应速率取决于C-C错配碱基对近端的碱基序列。因此,在含有中心d[M4M3M2M1Cn1n2n3n4].d[N4N3N2N1Cm1m2m3m4]序列的19聚体双链体中,其中M-m和N-n是互补碱基对,交联量随着与C-C错配相邻的八个碱基对中G-C含量的增加以及G-C对与C-C错配的接近程度而增加。对溶剂化双链体的分子动力学模拟对这些数据做出了解释。因此,对于两侧为G-C碱基对的C-C对,错配的胞嘧啶碱基保持堆叠在双链体内,但对于两侧为A-T碱基对的C-C对来说,模拟表明双链体在C-C对周围局部打开,使其成为氮芥作用效果较差的靶点。

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