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一颗正在崛起的巨星:TTN综述及突变更新

A rising titan: TTN review and mutation update.

作者信息

Chauveau Claire, Rowell John, Ferreiro Ana

机构信息

Inserm, U787 Myology Group, Institut de Myologie, Groupe Hospitalier Pitié-Salpêtrière, Paris, France; UPMC, UMR787, Paris, France.

出版信息

Hum Mutat. 2014 Sep;35(9):1046-59. doi: 10.1002/humu.22611. Epub 2014 Jul 21.

Abstract

The 364 exon TTN gene encodes titin (TTN), the largest known protein, which plays key structural, developmental, mechanical, and regulatory roles in cardiac and skeletal muscles. Prior to next-generation sequencing (NGS), routine analysis of the whole TTN gene was impossible due to its giant size and complexity. Thus, only a few TTN mutations had been reported and the general incidence and spectrum of titinopathies was significantly underestimated. In the last months, due to the widespread use of NGS, TTN is emerging as a major gene in human-inherited disease. So far, 127 TTN disease-causing mutations have been reported in patients with at least 10 different conditions, including isolated cardiomyopathies, purely skeletal muscle phenotypes, or infantile diseases affecting both types of striated muscles. However, the identification of TTN variants in virtually every individual from control populations, as well as the multiplicity of TTN isoforms and reference sequences used, stress the difficulties in assessing the relevance, inheritance, and correlation with the phenotype of TTN sequence changes. In this review, we provide the first comprehensive update of the TTN mutations reported and discuss their distribution, molecular mechanisms, associated phenotypes, transmission pattern, and phenotype-genotype correlations, alongside with their implications for basic research and for human health.

摘要

364外显子的TTN基因编码肌联蛋白(TTN),这是已知最大的蛋白质,它在心肌和骨骼肌中发挥关键的结构、发育、机械和调节作用。在新一代测序(NGS)出现之前,由于TTN基因巨大的规模和复杂性,对其进行全基因常规分析是不可能的。因此,此前仅报道了少数TTN突变,并且对肌联蛋白病的总体发病率和谱系被严重低估。在过去几个月里,由于NGS的广泛应用,TTN正成为人类遗传疾病中的一个主要基因。到目前为止,已经在患有至少10种不同病症的患者中报道了127种TTN致病突变,这些病症包括孤立性心肌病、单纯性骨骼肌表型或影响两种类型横纹肌的婴儿疾病。然而,在几乎每个对照人群个体中都发现了TTN变异体,以及所使用的TTN异构体和参考序列的多样性,这凸显了评估TTN序列变化的相关性、遗传方式及其与表型的相关性的困难。在本综述中,我们首次全面更新了已报道的TTN突变,并讨论了它们的分布、分子机制、相关表型、遗传模式以及表型-基因型相关性,以及它们对基础研究和人类健康的影响。

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