首页> 外文期刊>European journal of human genetics: EJHG >Clinical features and molecular modelling of novel MPZ mutations in demyelinating and axonal neuropathies.
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Clinical features and molecular modelling of novel MPZ mutations in demyelinating and axonal neuropathies.

机译:脱髓鞘和轴突神经病中新的MPZ突变的临床特征和分子模型。

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摘要

Mutations in the myelin protein zero (MPZ) gene have been associated with different Charcot-Marie-Tooth disease (CMT) phenotypes, including classical demyelinating CMT1B and the axonal form of the disease (CMT2). The MPZ role in the pathogenesis of both demyelinating and axonal inherited neuropathies was evaluated in the Italian population by screening a cohort of 214 patients with CMT1 or CMT2. A MPZ mutation frequency of 7.9% in demyelinating cases and of 4.8% in axonal cases was observed. In the total cohort (264 patients), including those with mutations in other genes, a mutation frequency of 5.8% (7/121) in demyelinating cases and 4.2% (6/143) in axonal cases was found. Three novel MPZ mutations, two missense (p.Ser111Cys, p.Thr124Ala) and one frameshift (p.Tyr145fs) were found, and a molecular modelling approach was used to test the effects of these mutations on the protein structure. Electrostatic distribution changes within the protein, caused by the amino acid substitution, fit in with phenotypes presented by patients herein described. Our findings suggest that the clinical features associated with MPZ mutations depend partly on the nature of amino acid change and that molecular modelling may provide useful support, based on effects on secondary and tertiary protein structure, to predict the phenotype associated with MPZ mutations.
机译:髓磷脂蛋白零(MPZ)基因的突变已与不同的Charcot-Marie-Tooth疾病(CMT)表型相关,包括经典的脱髓鞘CMT1B和该疾病的轴突形式(CMT2)。在意大利人群中,通过筛查214名CMT1或CMT2患者,评估了MPZ在脱髓鞘和轴突遗传性神经病发病机理中的作用。在脱髓鞘病例中,MPZ突变频率为7.9%,在轴突病例中为4.8%。在整个队列中(264名患者),包括那些在其他基因中发生突变的患者,在脱髓鞘病例中发现了5.8%的突变频率(7/121),在轴突病例中发现了4.2%(6/143)的突变频率。发现了三个新颖的MPZ突变,两个错义(p.Ser111Cys,p.Thr124Ala)和一个移码(p.Tyr145fs),并使用分子建模方法测试了这些突变对蛋白质结构的影响。由氨基酸取代引起的蛋白质内的静电分布变化与本文所述患者呈现的表型吻合。我们的发现表明,与MPZ突变相关的临床特征部分取决于氨基酸变化的性质,并且基于对二级和三级蛋白质结构的影响,分子建模可能会提供有用的支持,以预测与MPZ突变相关的表型。

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