Truncating mutations in exons 20 and 21 of OFD1 can cause primary ciliary dyskinesia without associated syndromic symptoms

原发性睫状体运动障碍 伯特症候群 睫状体病 纤毛病 纤毛 运动纤毛 倒位 遗传学 生物 医学 外显子 病理 突变 基因 生物信息学 表型 内科学 支气管扩张
作者
Zuzanna Bukowy‐Bieryłło,Alicja Rabiasz,M Dabrowski,Andrzej Pogorzelski,Alina Wojda,Hanna Dmeńska,Katarzyna Grzela,Sroczyński Jakub,Michał Witt,Ewa Ziętkiewicz
出处
期刊:Journal of Medical Genetics [BMJ]
卷期号:56 (11): 769-777 被引量:35
标识
DOI:10.1136/jmedgenet-2018-105918
摘要

Background Primary ciliary dyskinesia (PCD) is a motile ciliopathy, whose symptoms include airway infections, male infertility and situs inversus . Apart from the typical forms of PCD, rare syndromic PCD forms exist. Mutations of the X-linked OFD1 gene cause several syndromic ciliopathies, including oral-facial-digital syndrome type 1, Joubert syndrome type 10 (JBTS10), and Simpson-Golabi-Behmel syndrome type 2, the latter causing the X-linked syndromic form of PCD. Neurological and skeletal symptoms are characteristic for these syndromes, with their severity depending on the location of the mutation within the gene. Objectives To elucidate the role of motile cilia defects in the respiratory phenotype of PCD patients with C-terminal OFD1 mutations. Methods Whole-exome sequencing in a group of 120 Polish PCD patients, mutation screening of the OFD1 coding sequence, analysis of motile cilia, and magnetic resonance brain imaging. Results Four novel hemizygous OFD1 mutations, in exons 20 and 21, were found in men with a typical PCD presentation but without severe neurological, skeletal or renal symptoms characteristic for other OFD1 -related syndromes. Magnetic resonance brain imaging in two patients did not show a molar tooth sign typical for JBTS10. Cilia in the respiratory epithelium were sparse, unusually long and displayed a defective motility pattern. Conclusion Consistent with the literature, truncations of the C-terminal part of OFD1 (exons 16–22) almost invariably cause a respiratory phenotype (due to motile cilia defects) while their impact on the primary cilia function is limited. We suggest that exons 20–21 should be included in the panel for regular mutation screening in PCD.

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