首页> 外文期刊>Amyloid: the international journal of experimental and clinical investigation : the official journal of the International Society of Amyloidosis >A novel transthyretin variant p.H110D (H90D) as a cause of familial amyloid polyneuropathy in a large Irish kindred
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A novel transthyretin variant p.H110D (H90D) as a cause of familial amyloid polyneuropathy in a large Irish kindred

机译:一种新型的运甲状腺素蛋白变体p.H110D(H90D)引起爱尔兰大家庭的家族性淀粉样蛋白多神经病

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摘要

Hereditary transthyretin (ATTR) amyloidosis is caused by inheritance of an abnormal TTR gene in an autosomal dominant fashion. In its native state, TTR is a homotetramer consisting of four identical polypeptides. Mutations in the TTR gene contribute to destabilization and dissociation of the TTR tetramer, enabling abnormally folded monomers to self-assemble as amyloid fibrils. Currently, over 120 TTR variants have been described, with varying geographic distributions, degrees of amyloidogenicity and organ involvement. We report here a large Irish family with familial amyloid polyneuropathy (FAP), consisting of multiple affected generations, caused by a novel TTR mutation; p.H110D (H90D). The demonstration, by immunohistochemistry and laser micro dissection-mass spectrometry (LMD/MS) that the amyloid fibrils were composed of TTR, in conjunction with a typical FAP phenotype, indicates that the novel TTR mutation was the cause of amyloidosis. We used a molecular visualization tool PyMOL to analyze the effect of the p.H110D (H90D) replacement on the stability of the TTR molecule. Our data suggest that the loss of two hydrogen bonds and the presence of an additional negative charge in the core of a cluster of acidic residues significantly perturb the tetramer stability and likely contribute to the pathogenic role of this variant.
机译:遗传性甲状腺素转运蛋白(ATTR)淀粉样变性是由异常TTR基因的遗传以常染色体显性方式引起的。在其天然状态下,TTR是由四个相同多肽组成的同源四聚体。 TTR基因中的突变有助于TTR四聚体的不稳定和解离,使异常折叠的单体能够自组装成淀粉样原纤维。当前,已经描述了超过120种TTR变体,具有不同的地理分布,淀粉样变性程度和器官参与。我们在这里报告了一个爱尔兰大家庭,患有家族性淀粉样蛋白多神经病(FAP),由多个受影响的世代组成,由新的TTR突变引起;第H110D页(H90D)。通过免疫组织化学和激光显微解剖质谱法(LMD / MS)证实淀粉样蛋白原纤维由TTR结合典型的FAP表型组成,表明新的TTR突变是淀粉样变性的病因。我们使用分子可视化工具PyMOL分析了p.H110D(H90D)替代对TTR分子稳定性的影响。我们的数据表明,两个氢键的丢失和酸性残基簇的核心中存在额外的负电荷会显着干扰四聚体的稳定性,并可能有助于此变体的致病作用。

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