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GAS8基因(一种编码连接蛋白-动力蛋白调节复合体亚基的基因)的突变导致原发性纤毛运动障碍并伴有轴丝紊乱。

Mutations in GAS8, a Gene Encoding a Nexin-Dynein Regulatory Complex Subunit, Cause Primary Ciliary Dyskinesia with Axonemal Disorganization.

作者信息

Jeanson Ludovic, Thomas Lucie, Copin Bruno, Coste André, Sermet-Gaudelus Isabelle, Dastot-Le Moal Florence, Duquesnoy Philippe, Montantin Guy, Collot Nathalie, Tissier Sylvie, Papon Jean-François, Clement Annick, Louis Bruno, Escudier Estelle, Amselem Serge, Legendre Marie

机构信息

Institut National de la Santé Et de la Recherche Médicale (INSERM), UMR_S933, Sorbonne Universités, UPMC Univ Paris 06, Paris, F-75012, France.

Assistance Publique - Hôpitaux de Paris (AP-HP), Hôpital Armand Trousseau, Service de Génétique et Embryologie Médicales, Paris, F-75012, France.

出版信息

Hum Mutat. 2016 Aug;37(8):776-85. doi: 10.1002/humu.23005. Epub 2016 May 12.

Abstract

Primary ciliary dyskinesia (PCD) is an autosomal recessive disease characterized by chronic respiratory infections of the upper and lower airways, hypofertility, and, in approximately half of the cases, situs inversus. This complex phenotype results from defects in motile cilia and sperm flagella. Among the numerous genes involved in PCD, very few-including CCDC39 and CCDC40-carry mutations that lead to a disorganization of ciliary axonemes with microtubule misalignment. Focusing on this particular phenotype, we identified bi-allelic loss-of-function mutations in GAS8, a gene that encodes a subunit of the nexin-dynein regulatory complex (N-DRC) orthologous to DRC4 of the flagellated alga Chlamydomonas reinhardtii. Unlike the majority of PCD patients, individuals with GAS8 mutations have motile cilia, which, as documented by high-speed videomicroscopy, display a subtle beating pattern defect characterized by slightly reduced bending amplitude. Immunofluorescence studies performed on patients' respiratory cilia revealed that GAS8 is not required for the proper expression of CCDC39 and CCDC40. Rather, mutations in GAS8 affect the subcellular localization of another N-DRC subunit called DRC3. Overall, this study, which identifies GAS8 as a PCD gene, unveils the key importance of the corresponding protein in N-DRC integrity and in the proper alignment of axonemal microtubules in humans.

摘要

原发性纤毛运动障碍(PCD)是一种常染色体隐性疾病,其特征为上、下呼吸道的慢性感染、生育力低下,约半数病例伴有内脏反位。这种复杂的表型是由运动性纤毛和精子鞭毛缺陷引起的。在众多与PCD相关的基因中,只有极少数基因(包括CCDC39和CCDC40)携带的突变会导致纤毛轴丝微管排列紊乱。针对这一特殊表型,我们在GAS8基因中鉴定出双等位基因功能缺失突变,该基因编码一种与莱茵衣藻鞭毛中的DRC4直系同源的nexin - 动力蛋白调节复合体(N - DRC)的亚基。与大多数PCD患者不同,携带GAS8突变的个体具有运动性纤毛,高速视频显微镜记录显示,这些纤毛表现出轻微的摆动模式缺陷,其特征为弯曲幅度略有减小。对患者呼吸道纤毛进行的免疫荧光研究表明,CCDC39和CCDC40的正常表达并不需要GAS8。相反,GAS8突变会影响另一种名为DRC3的N - DRC亚基的亚细胞定位。总体而言,这项将GAS8鉴定为PCD基因的研究揭示了相应蛋白质在人类N - DRC完整性以及轴丝微管正确排列中的关键重要性。

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