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首页> 外文期刊>Human mutation >Molecular genetic characterization of SMAD signaling molecules in pulmonary arterial hypertension.
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Molecular genetic characterization of SMAD signaling molecules in pulmonary arterial hypertension.

机译:肺动脉高压中SMAD信号分子的分子遗传学表征。

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摘要

Heterozygous germline mutations of BMPR2 contribute to familial clustering of pulmonary arterial hypertension (PAH). To further explore the genetic basis of PAH in isolated cases, we undertook a candidate gene analysis to identify potentially deleterious variation. Members of the bone morphogenetic protein (BMP) pathway, namely SMAD1, SMAD4, SMAD5, and SMAD9, were screened by direct sequencing for gene defects. Four variants were identified in SMADs 1, 4, and 9 among a cohort of 324 PAH cases, each not detected in a substantial control population. Of three amino acid substitutions identified, two demonstrated reduced signaling activity in vitro. A putative splice site mutation in SMAD4 resulted in moderate transcript loss due to compromised splicing efficiency. These results demonstrate the role of BMPR2 mutation in the pathogenesis of PAH and indicate that variation within the SMAD family represents an infrequent cause of the disease.
机译:BMPR2的杂合种系突变有助于肺动脉高压(PAH)的家族聚集。为了进一步探讨孤立病例中PAH的遗传基础,我们进行了候选基因分析以鉴定潜在的有害变异。骨形态发生蛋白(BMP)途径的成员,即SMAD1,SMAD4,SMAD5和SMAD9,通过直接测序来筛选基因缺陷。在324个PAH病例队列中的SMAD 1、4和9中鉴定出4个变异体,每个变异体在大量对照人群中均未检测到。在鉴定出的三个氨基酸取代中,两个在体外表现出降低的信号传导活性。 SMAD4中一个假定的剪接位点突变由于剪接效率受损而导致中等程度的转录本丢失。这些结果证明了BMPR2突变在PAH发病机理中的作用,并表明SMAD家族内的变异代表该病的罕见病因。

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