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Uncovering universal rules governing the selectivity of the archetypal DNA glycosylase TDG

机译:揭示控制原型DNA糖基化酶TDG选择性的通用规则

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摘要

Thymine DNA glycosylase (TDG) is a pivotal enzyme with dual roles in both genome maintenance and epigenetic regulation. TDG is involved in cytosine demethylation at CpG sites in DNA. Here we have used molecular modeling to delineate the lesion search and DNA base interrogation mechanisms of TDG. First, we examined the capacity of TDG to interrogate not only DNA substrates with 5-carboxyl cytosine modifications but also G:T mismatches and nonmismatched (A:T) base pairs using classical and accelerated molecular dynamics. To determine the kinetics, we constructed Markov state models. Base interrogation was found to be highly stochastic and proceeded through insertion of an arginine-containing loop into the DNA minor groove to transiently disrupt Watson–Crick pairing. Next, we employed chain-of-replicas path-sampling methodologies to compute minimum free energy paths for TDG base extrusion. We identified the key intermediates imparting selectivity and determined effective free energy profiles for the lesion search and base extrusion into the TDG active site. Our results show that DNA sculpting, dynamic glycosylase interactions, and stabilizing contacts collectively provide a powerful mechanism for the detection and discrimination of modified bases and epigenetic marks in DNA.
机译:胸腺嘧啶DNA糖基化酶(TDG)是一种关键酶,在基因组维持和表观遗传调控中均具有双重作用。 TDG与DNA中CpG位点的胞嘧啶脱甲基有关。在这里,我们已经使用分子建模来描述TDG的病变搜索和DNA碱基询问机制。首先,我们使用经典的分子动力学和加速的分子动力学方法研究了TDG不仅可以查询具有5-羧基胞嘧啶修饰的DNA底物,还可以查询G:T错配和非错配(A:T)碱基对的能力。为了确定动力学,我们构建了马尔可夫状态模型。发现碱基查询是高度随机的,并通过将含精氨酸的环插入DNA小沟进行,以暂时破坏Watson-Crick配对。接下来,我们采用复制链路径采样方法来计算TDG基础挤压的最小自由能路径。我们确定了赋予选择性的关键中间体,并确定了病灶搜索和向TDG活性位点碱基挤出的有效自由能谱。我们的结果表明,DNA雕刻,动态糖基化酶相互作用和稳定接触共同为检测和区分DNA中修饰的碱基和表观遗传标记提供了强大的机制。

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