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首页> 外文期刊>Neuromuscular disorders: NMD >Recessive mutations in proximal I-band of TTN gene cause severe congenital multi-minicore disease without cardiac involvement
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Recessive mutations in proximal I-band of TTN gene cause severe congenital multi-minicore disease without cardiac involvement

机译:TTN基因近端I波段的隐性突变导致严重的先天性多毛细管病,没有心脏受累

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摘要

Titin, encoded by the gene TTN, is one of the main sarcomere components. It is involved in not only maintaining the structure of cardiac and skeletal muscles, but also in their development, extensibility, elasticity, and signaling events. Congenital titinopathy increasingly appears an important and common form of axial predominant congenital myopathy. The pathophysiological role of TTN in congenital titinopathy and pediatric heart diseases is yet to be explored. Here, we delineate the phenotype of two female siblings who developed severe congenital multi-minicore disease without cardiac involvement. Genetic investigation by whole exome sequencing demonstrated compound heterozygous TTN mutations (c.15496+1G>A, p.5166_5258de1; c.18597_18598insC, p.Thr6200Hisfs*15), corresponding to the Ig domain of the proximal I-band. Aberrant splicing causing exon skipping was verified by in vitro minigene analysis. Our results suggest that TTN mutations affecting the Ig domain of the proximal I-band may be a cause of severe congenital defect in skeletal muscles without severe cardiac involvement, thereby providing evidence for the hypothesis that congenital titinopathy patients carrying biallelic N2BA only mutations are at lower cardiac risk than those with other combinations of mutations. Meanwhile, this study confirm the hypothesis on recessive truncating variants of TTN experimentally and thus support earlier reported genotype-phenotype correlations. (C) 2019 Published by Elsevier B.V.
机译:由基因TTN编码的三肽是主要的Sarcomere组件之一。它不仅涉及维持心脏和骨骼肌的结构,还参与了他们的开发,可扩展性,弹性和信号事件。先天性三疗病越来越多地似乎是一种重要且常见的轴向主要先天性肌病形式。 TTN在先天性三疗病和儿科心脏病中的病理生理作用尚未探讨。在这里,我们描绘了两名女性兄弟姐妹的表型,他们开发出严重的先天性多毛细管病而没有心脏受累。通过整体exome测序的遗传调查证明了化合物杂合子TTN突变(C.15496 + 1G> A,P.5166_5258DE1; C.18597_18598Insc,P.Thrhr6200hisfs * 15),对应于近端I波段的IG结构域。通过体外微型分析验证了导致外显子跳跃的异常剪接。我们的研究结果表明,影响近端I带的Ig结构域的TTN突变可能是骨骼肌严重先天性缺陷的原因,而没有严重的心脏受累,从而提供了携带双曲线N2BA的先天性标题患者的假设较低心脏风险比其他突变组合的风险。同时,该研究证实了实验性TTN的隐性截断变体的假设,从而支持早期报告的基因型表型相关性。 (c)2019年由elestvier b.v发布。

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