The inner junction protein CFAP20 functions in motile and non-motile cilia and is critical for vision

内连接蛋白CFAP20在运动纤毛和非运动纤毛中发挥作用,对视觉至关重要。

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作者:Paul W Chrystal #,Nils J Lambacher #,Lance P Doucette,James Bellingham,Elena R Schiff,Nicole C L Noel,Chunmei Li,Sofia Tsiropoulou,Geoffrey A Casey,Yi Zhai,Nathan J Nadolski,Mohammed H Majumder,Julia Tagoe,Fabiana D'Esposito,Maria Francesca Cordeiro,Susan Downes,Jill Clayton-Smith,Jamie Ellingford,Jennifer C Hocking,Michael E Cheetham,Andrew R Webster,Gert Jansen,Oliver E Blacque,W Ted Allison,Ping Yee Billie Au,Ian M MacDonald,Gavin Arno,Michel R Leroux

Abstract

Motile and non-motile cilia are associated with mutually-exclusive genetic disorders. Motile cilia propel sperm or extracellular fluids, and their dysfunction causes primary ciliary dyskinesia. Non-motile cilia serve as sensory/signalling antennae on most cell types, and their disruption causes single-organ ciliopathies such as retinopathies or multi-system syndromes. CFAP20 is a ciliopathy candidate known to modulate motile cilia in unicellular eukaryotes. We demonstrate that in zebrafish, cfap20 is required for motile cilia function, and in C. elegans, CFAP-20 maintains the structural integrity of non-motile cilia inner junctions, influencing sensory-dependent signalling and development. Human patients and zebrafish with CFAP20 mutations both exhibit retinal dystrophy. Hence, CFAP20 functions within a structural/functional hub centered on the inner junction that is shared between motile and non-motile cilia, and is distinct from other ciliopathy-associated domains or macromolecular complexes. Our findings suggest an uncharacterised pathomechanism for retinal dystrophy, and potentially for motile and non-motile ciliopathies in general.

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