Cortés Claudio R, McInerney-Leo Aideen M, Vogel Ida, Rondón Galeano Maria C, Leo Paul J, Harris Jessica E, Anderson Lisa K, Keith Patricia A, Brown Matthew A, Ramsing Mette, Duncan Emma L, Zankl Andreas, Wicking Carol
Institute for Molecular Bioscience, The University of Queensland, Brisbane, QLD 4072, Australia.
The University of Queensland Diamantina Institute, University of Queensland, Australia.
Sci Rep. 2016 Apr 20;6:24083. doi: 10.1038/srep24083.
Ciliopathies are a group of genetic disorders caused by defective assembly or dysfunction of the primary cilium, a microtubule-based cellular organelle that plays a key role in developmental signalling. Ciliopathies are clinically grouped in a large number of overlapping disorders, including the orofaciodigital syndromes (OFDS), the short rib polydactyly syndromes and Jeune asphyxiating thoracic dystrophy. Recently, mutations in the gene encoding the centriolar protein C2CD3 have been described in two families with a new sub-type of OFDS (OFD14), with microcephaly and cerebral malformations. Here we describe a third family with novel compound heterozygous C2CD3 mutations in two fetuses with a different clinical presentation, dominated by skeletal dysplasia with no microcephaly. Analysis of fibroblast cultures derived from one of these fetuses revealed a reduced ability to form cilia, consistent with previous studies in C2cd3-mutant mouse and chicken cells. More detailed analyses support a role for C2CD3 in basal body maturation; but in contrast to previous mouse studies the normal recruitment of the distal appendage protein CEP164 suggests that this protein is not sufficient for efficient basal body maturation and subsequent axonemal extension in a C2CD3-defective background.
纤毛病是一组由初级纤毛组装缺陷或功能障碍引起的遗传性疾病,初级纤毛是一种基于微管的细胞器,在发育信号传导中起关键作用。纤毛病在临床上分为大量重叠的疾病,包括口面指综合征(OFDS)、短肋多指综合征和Jeune窒息性胸廓发育不良。最近,在两个患有新型OFDS亚型(OFD14)且伴有小头畸形和脑畸形的家族中,发现了编码中心粒蛋白C2CD3的基因突变。在此,我们描述了第三个家族,两个胎儿存在新型复合杂合C2CD3突变,临床表现不同,以骨骼发育异常为主,无小头畸形。对其中一个胎儿的成纤维细胞培养物进行分析发现,其形成纤毛的能力降低,这与之前对C2cd3突变小鼠和鸡细胞的研究一致。更详细的分析支持C2CD3在基体成熟中起作用;但与之前的小鼠研究不同,远端附属蛋白CEP164的正常募集表明,在C2CD3缺陷背景下,该蛋白不足以实现有效的基体成熟和随后的轴丝延伸。