首页> 外文期刊>American journal of medical genetics, Part A >Respiratory Motile Cilia Dysfunction in a Patient with Cranioectodermal Dysplasia
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Respiratory Motile Cilia Dysfunction in a Patient with Cranioectodermal Dysplasia

机译:颅外皮发育不良患者的呼吸活动性纤毛功能障碍

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Ciliopathies such as cranioectodermal dysplasia, Sensenbrenner syndrome, short-rib polydactyly, and Jeune syndrome are associated with respiratory complications arising from rib cage dysplasia. While such ciliopathies have been demonstrated to involve primary cilia defects, we show motile cilia dysfunction in the airway of a patient diagnosed with cranioectodermal dysplasia. While this patient had mild thoracic dystrophy not requiring surgical treatment, there was nevertheless newborn respiratory distress, restrictive airway disease with possible obstructive airway involvement, repeated respiratory infections, and atelectasis. High-resolution videomicroscopy of nasal epithelial biopsy showed immotile/dyskinetic cilia and nasal nitric oxide was reduced, both of which are characteristics of primary ciliary dyskinesia, a sinopulmonary disease associated with mucociliary clearance defects due to motile cilia dysfunction in the airway. Exome sequencing analysis of this patient identified compound heterozygous mutations in WDR35, but no mutations in any of the 30 known primary ciliary dyskinesia genes or other cilia-related genes. Given that WDR35 is only known to be required for primary cilia function, we carried out WDR35 siRNA knockdown in human respiratory epithelia to assess the role of WDR35 in motile cilia function. This showed WDR35 deficiency disrupted ciliogenesis in the airway, indicating WDR35 is also required for formation of motile cilia. Together, these findings suggest patients with WDR35 mutations have an airway mucociliary clearance defect masked by their restrictive airway disease. (C) 2015 Wiley Periodicals, Inc.
机译:脊柱外皮发育不良,Sensenbrenner综合征,短肋多指症和Jeune综合征等小儿病变与肋骨笼发育不良引起的呼吸系统并发症有关。虽然已证明此类纤毛虫病涉及原发性纤毛缺损,但我们在诊断为颅外皮发育不良的患者的气道中显示出活动性纤毛功能障碍。尽管该患者患有轻度胸廓营养不良,无需手术治疗,但仍有新生儿呼吸窘迫,限制性气道疾病和可能的阻塞性气道受累,反复呼吸道感染和肺不张。鼻上皮活检的高分辨率视频显微镜检查显示,运动/运动障碍性纤毛和鼻腔一氧化氮减少,这两者都是原发性睫状运动障碍的特征,这是一种由于运动的纤毛功能障碍而引起的粘膜纤毛清除缺陷的鼻肺疾病。该患者的外显子组测序分析确定了WDR35中的复合杂合突变,但在30种已知的原发性睫状运动障碍基因或其他纤毛相关基因中没有任何突变。鉴于只知道WDR35仅是初级纤毛功能所必需的,因此我们在人呼吸道上皮细胞中进行了WDR35 siRNA抑制,以评估WDR35在运动性纤毛功能中的作用。这表明WDR35缺乏会破坏气道纤毛形成,表明WDR35也需要形成运动性纤毛。总之,这些发现表明,具有WDR35突变的患者因其限制性气道疾病而被掩盖了气道粘膜纤毛清除缺陷。 (C)2015年Wiley Periodicals,Inc.

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