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一例因HFE基因新的复合杂合性(p.[甘氨酸43天冬氨酸;组氨酸63天冬氨酸]+[半胱氨酸282酪氨酸])导致的血色素沉着症罕见病例:与转铁蛋白受体1结合的结构意义

An unusual case of hemochromatosis due to a new compound heterozygosity in HFE (p.[Gly43Asp;His63Asp]+[Cys282Tyr]): structural implications with respect to binding with transferrin receptor 1.

作者信息

Dupradeau François-Yves, Pissard Serge, Coulhon Marie-Pierre, Cadet Estelle, Foulon Karine, Fourcade Christine, Goossens Michel, Case David Andrew, Rochette Jacques

机构信息

Université de Picardie Jules Verne, UPRES EA 3901 & INSERM E0351, Pôle Santé, Amiens, France.

出版信息

Hum Mutat. 2008 Jan;29(1):206. doi: 10.1002/humu.9517.

Abstract

Most adults affected with HFE hereditary hemochromatosis (HH type 1, MIMmusical sharp 235200) are homozygous for the p.Cys282Tyr mutation in HFE (NC_000006.10, region 26195427 to 26205038). The aim of this study was to investigate the molecular basis of iron overload in a patient presenting with severe clinical HH with one c.845G>A (p.Cys282Tyr) allele only. Molecular and pedigree studies demonstrated the presence of the c.845G>A (p.Cys282Tyr) mutation in one allele whereas the other carried the c.187C>G (p.His63Asp) mutation plus a new c.128G>A (p.Gly43Asp) substitution in cis. A molecular modeling study of the p.[Gly43Asp;His63Asp] and p.His63Asp variants versus the wild type was carried out using molecular dynamics (MD) simulation in presence of implicit solvent. We found that the c.187C>G (p.His63Asp) mutation does not introduce any major change in the 1- domains of HFE whereas the c.128G>A (p.Gly43Asp) substitution is responsible for a modification of the dynamics and the structure of the Gln40-Ser45 loop, a critical region for HFE-TfR1 interaction thus impairing HFE-TfR1 normal contact. We conclude that the occurrence of complex alleles may be an alternative explanation for the variability of the phenotype in individuals who are compound heterozygous for c.[187C>G]+[845G>A] (p.[His63Asp]+[Cys282Tyr]).

摘要

大多数患有HFE遗传性血色素沉着症(1型HH,MIM编号235200)的成年人在HFE基因(NC_000006.10,区域26195427至26205038)中p.Cys282Tyr突变位点呈纯合状态。本研究的目的是调查一名仅携带一个c.845G>A(p.Cys282Tyr)等位基因且临床表现严重的HH患者铁过载的分子基础。分子和家系研究表明,一个等位基因存在c.845G>A(p.Cys282Tyr)突变,而另一个等位基因则携带c.187C>G(p.His63Asp)突变以及一个新的顺式c.128G>A(p.Gly43Asp)替换。在存在隐式溶剂的情况下,使用分子动力学(MD)模拟对p.[Gly43Asp;His63Asp]和p.His63Asp变体与野生型进行了分子建模研究。我们发现,c.187C>G(p.His63Asp)突变在HFE的1-结构域中未引入任何重大变化,而c.128G>A(p.Gly43Asp)替换导致Gln40-Ser45环的动力学和结构发生改变,该区域是HFE-TfR1相互作用的关键区域,从而损害了HFE-TfR1的正常接触。我们得出结论,复杂等位基因的出现可能是c.[187C>G]+[845G>A](p.[His63Asp]+[Cys282Tyr])复合杂合个体表型变异性的另一种解释。

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