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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Insight into TPMT*23 mutation mis-folding using molecular dynamics simulation and protein structure analysis
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Insight into TPMT*23 mutation mis-folding using molecular dynamics simulation and protein structure analysis

机译:使用分子动力学模拟和蛋白质结构分析洞察TPMT * 23突变错误折叠

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摘要

Thiopurine S-methyltransferase (TPMT) is an important enzyme that metabolizes thiopurine drugs. This enzyme exhibits a large number of interindividual polymorphism. TPMT*23 polymorphism has been reported in a few cases in the world in co-dominance with TPMT*3A. The phenotype has been reported to affect enzyme activity in vivo and in vitro. Its underlying structural basis is not clarified yet. In our study, the wild type (WT) protein structure was analyzed and the amino acids bordering water channels in thiopurine sites were identified. Molecular dynamics of both the WT and TPMT*23 mutation was carried out. In addition, the effects of this mutation, especially on the thiopurine site which is closed with a pincer like mechanism, were investigated. We focused on explaining how a locally occurred A167G substitution propagated through hydrogen bonds alteration to induce structural modification which affects both thiopurine and S-adenosylmethionine receptors. Finally, a genetic prediction of mutation functional consequences has been conducted confirming altered activity.
机译:硫嘌呤S-甲基转移酶(TPMT)是代谢硫嘌呤药物的重要酶。该酶表现出大量的个体间多态性。 TPMT * 23基因多态性在世界上已有报道与TPMT * 3A共同存在。据报道该表型在体内和体外影响酶的活性。其基础结构基础尚未阐明。在我们的研究中,分析了野生型(WT)蛋白质结构,并鉴定了硫嘌呤位点水通道附近的氨基酸。进行了WT和TPMT * 23突变的分子动力学。此外,研究了这种突变的影响,特别是对以钳子状机制封闭的硫嘌呤位点的影响。我们专注于解释局部发生的A167G取代如何通过氢键变化传播以诱导结构修饰,从而影响硫嘌呤和S-腺苷甲硫氨酸受体。最后,已经进行了突变功能后果的遗传预测,确认了活性的改变。

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