首页> 外文期刊>The American Journal of Human Genetics >Whole-exome capture and sequencing identifies HEATR2 mutation as a cause of primary ciliary dyskinesia
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Whole-exome capture and sequencing identifies HEATR2 mutation as a cause of primary ciliary dyskinesia

机译:全基因组捕获和测序确定HEATR2突变是原发性睫状运动障碍的原因

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Motile cilia are essential components of the mucociliary escalator and are central to respiratory-tract host defenses. Abnormalities in these evolutionarily conserved organelles cause primary ciliary dyskinesia (PCD). Despite recent strides characterizing the ciliome and sensory ciliopathies through exploration of the phenotype-genotype associations in model organisms, the genetic bases of most cases of PCD remain elusive. We identified nine related subjects with PCD from geographically dispersed Amish communities and performed exome sequencing of two affected individuals and their unaffected parents. A single autosomal-recessive nonsynonymous missense mutation was identified in HEATR2, an uncharacterized gene that belongs to a family not previously associated with ciliary assembly or function. Airway epithelial cells isolated from PCD-affected individuals had markedly reduced HEATR2 levels, absent dynein arms, and loss of ciliary beating. MicroRNA-mediated silencing of the orthologous gene in Chlamydomonas reinhardtii resulted in absent outer dynein arms, reduced flagellar beat frequency, and decreased cell velocity. These findings were recapitulated by small hairpin RNA-mediated knockdown of HEATR2 in airway epithelial cells from unaffected donors. Moreover, immunohistochemistry studies in human airway epithelial cells showed that HEATR2 was localized to the cytoplasm and not in cilia, which suggests a role in either dynein arm transport or assembly. The identification of HEATR2 contributes to the growing number of genes associated with PCD identified in both individuals and model organisms and shows that exome sequencing in family studies facilitates the discovery of novel disease-causing gene mutations.
机译:运动纤毛是粘膜纤毛自动扶梯的重要组成部分,对呼吸道宿主防御至关重要。这些进化上保守的细胞器的异常导致原发性睫状运动障碍(PCD)。尽管最近通过探索模型生物中的表型-基因型关联来表征纤毛虫和感官纤毛虫病方面取得了长足进步,但大多数PCD病例的遗传基础仍然难以捉摸。我们从地理上分散的阿米什人社区中识别出9名与PCD相关的受试者,并对两个受影响的个体及其未受影响的父母进行了外显子组测序。在HEATR2中鉴定出一个常染色体隐性非同义的错义突变,这是一个未表征的基因,属于以前与睫毛组装或功能无关的家族。从受PCD影响的个体中分离出的气道上皮细胞具有明显降低的HEATR2水平,缺乏动力蛋白的臂和睫状跳动的丧失。 MicroRNA介导的莱茵衣藻直系同源基因的沉默导致缺乏动力的外部动力,减少鞭毛搏动频率,并降低细胞速度。这些发现通过未受过影响的供体的气道上皮细胞中的小发夹RNA介导的HEATR2敲低而得以概括。此外,对人气道上皮细胞的免疫组织化学研究表明,HEATR2定位于细胞质而不是纤毛中,这提示了其在动力蛋白臂运输或组装中的作用。 HEATR2的鉴定有助于在个体和模型生物中鉴定出与PCD相关的基因数量的增加,并表明家族研究中的外显子组测序有助于发现新的致病基因突变。

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