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首页> 外文期刊>Experimental dermatology >Computer simulation of heterogeneous single nucleotide polymorphisms in the catalase gene indicates structural changes in the enzyme active site, NADPH-binding and tetramerization domains: a genetic predisposition for an altered catalase in patients
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Computer simulation of heterogeneous single nucleotide polymorphisms in the catalase gene indicates structural changes in the enzyme active site, NADPH-binding and tetramerization domains: a genetic predisposition for an altered catalase in patients

机译:过氧化氢酶基因异质单核苷酸多态性的计算机模拟表明酶活性位点,NADPH结合和四聚化域的结构变化:患者过氧化氢酶改变的遗传易感性

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摘要

Patients with vitiligo have low levels/activities of catalase in their lesional and non-lesional epidermis as well as in their epidermal melanocytes under in vitro conditions while the levels of catalase mRNA are unaltered. This defect leads to a build-up of hydrogen peroxide (H(2)O(2)) in the 10(-3) m range in the epidermis of these patients. In this context, it was realized that 10(-3) m H(2)O(2) deactivates catalase. Along this line, it was also suspected that catalase in patients with vitiligo possesses a special sensitivity to this reactive oxygen species (ROS), and indeed several heterozygous single nucleotide polymorphisms (SNPs) have been documented in the cat gene of these patients. Based on the 3D structure of human catalase monomer, we have modelled the influence of three selected SNPs on the enzyme active site, on the NADPH- as well as the tetramerization-binding domains. Our results show that these SNPs severely alter catalase structurally, which in turn should make the enzyme more susceptible to ROS compared with wild-type enzyme. Taken together, the work presented herein together with the earlier results on SNPs in the cat gene suggests a genetic predisposition for an altered catalase in patients with vitiligo.
机译:在体外条件下,白癜风患者的病灶和非病灶表皮以及表皮黑素细胞中的过氧化氢酶水平/活性较低,而过氧化氢酶mRNA的水平未改变。此缺陷导致这些患者表皮中10(-3)m范围内的过氧化氢(H(2)O(2))堆积。在这种情况下,认识到10(-3)m H(2)O(2)使过氧化氢酶失活。沿着这条线,也怀疑白癜风患者的过氧化氢酶对此活性氧(ROS)具有特殊的敏感性,并且确实在这些患者的cat基因中记录了几种杂合的单核苷酸多态性(SNP)。基于人类过氧化氢酶单体的3D结构,我们已经模拟了三个选定的SNP对酶活性位点,NADPH和四聚体结合域的影响。我们的结果表明,这些SNP在结构上会严重改变过氧化氢酶,与野生型酶相比,这反过来应使该酶更容易受到ROS的影响。综上所述,本文提出的工作以及有关cat基因中SNP的早期结果表明,白癜风患者中过氧化氢酶改变的遗传易感性。

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