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BRWD1 基因的双等位变异可导致男性不育伴严重少弱畸形精子症和可能的原发性纤毛运动障碍。

Bi-allelic BRWD1 variants cause male infertility with asthenoteratozoospermia and likely primary ciliary dyskinesia.

机构信息

Department of Respiratory Medicine, The Second Xiangya Hospital, Central South University, Changsha, 410011, Hunan, China.

Research Unit of Respiratory Disease, Central South University, Changsha, 410011, Hunan, China.

出版信息

Hum Genet. 2021 May;140(5):761-773. doi: 10.1007/s00439-020-02241-4. Epub 2021 Jan 3.

DOI:10.1007/s00439-020-02241-4
PMID:33389130
Abstract

Genetics-associated asthenoteratozoospermia is often seen in patients with multiple morphological abnormalities of the sperm flagella (MMAF). Although 24 causative genes have been identified, these explain only approximately half of patients with MMAF. Since sperm flagella and motile cilia (especially respiratory cilia) have similar axonemal structures, many patients with MMAF also exhibit respiratory symptoms, such as recurrent airway infection, chronic sinusitis, and bronchiectasis, which are frequently associated with primary ciliary dyskinesia (PCD), another recessive disorder. Here, exome sequencing was conducted to evaluate the genetic cause in 53 patients with MMAF and classic PCD/PCD-like symptoms. Two homozygous missense variants and a compound-heterozygous variant in the BRWD1 gene were identified in three unrelated individuals. BRWD1 staining was detected in the whole flagella and respiratory cilia of normal controls but was absent in BRWD1-mutated individuals. Transmission electron microscopy and immunostaining demonstrated that BRWD1 deficiency in human affected respiratory cilia and sperm flagella differently, as the absence of outer and inner dynein arms in sperm flagellum and respiratory cilia, while with a decreased number and outer doublet microtubule defects of respiratory cilia. To our knowledge, this is the first report of a BRWD1-variant-related disease in humans, manifesting as an autosomal recessive form of MMAF and PCD/PCD-like symptoms. Our data provide a basis for further exploring the molecular mechanism of BRWD1 gene during spermatogenesis and ciliogenesis.

摘要

遗传相关的弱精-畸形精子症常发生于具有多种精子鞭毛形态异常(MMAF)的患者中。尽管已经鉴定出 24 个致病基因,但这些基因仅能解释约一半的 MMAF 患者的病因。由于精子鞭毛和运动纤毛(尤其是呼吸纤毛)具有相似的轴丝结构,许多 MMAF 患者还表现出呼吸症状,如反复呼吸道感染、慢性鼻窦炎和支气管扩张症,这些症状常与原发性纤毛运动障碍(PCD)相关,后者也是一种隐性遗传病。在这里,我们对 53 名 MMAF 患者和具有典型 PCD/PCD 样症状的患者进行了外显子组测序,以评估其遗传病因。在 3 名无血缘关系的个体中发现了 BRWD1 基因中的 2 个纯合错义变异和 1 个复合杂合变异。BRWD1 染色在正常对照的整个鞭毛和呼吸纤毛中均有检测到,但在 BRWD1 突变个体中则不存在。透射电子显微镜和免疫染色显示,BRWD1 缺乏会导致人类受影响的呼吸纤毛和精子鞭毛出现不同的变化,即在精子鞭毛和呼吸纤毛中缺失了外臂和内臂动力蛋白,但呼吸纤毛的数量减少且外微管双联体存在缺陷。据我们所知,这是首例 BRWD1 变异相关疾病的报道,表现为常染色体隐性遗传型 MMAF 和 PCD/PCD 样症状。我们的数据为进一步探索 BRWD1 基因在精子发生和纤毛发生过程中的分子机制提供了依据。

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