A HomozygousPDE6DMutation in Joubert Syndrome Impairs Targeting of Farnesylated INPP5E Protein to the Primary Cilium

生物 伯特症候群 纤毛 纤毛病 斑马鱼 遗传学 睫状体病 短乳 纤毛形成 细胞生物学 肾结核 突变 外显子组测序 表型 基因 内分泌学 身材矮小
作者
Sophie Thomas,Kevin J. Wright,Stéphanie Le Corre,Alessia Micalizzi,Marta Romani,Avinash Abhyankar,Julien Saada,Isabelle Perrault,Jeanne Amiel,Julie Litzler,Emilie Filhol,Nadia Elkhartoufi,Mandy Kwong,Jean‐Laurent Casanova,Nathalie Boddaert,Wolfgang Baehr,Stanislas Lyonnet,Arnold Münnich,Lydie Bürglen,Nicolas Chassaing
出处
期刊:Human Mutation [Wiley]
卷期号:35 (1): 137-146 被引量:122
标识
DOI:10.1002/humu.22470
摘要

Joubert syndrome (JS) is characterized by a distinctive cerebellar structural defect, namely the << molar tooth sign >>. JS is genetically heterogeneous, involving 20 genes identified to date, which are all required for cilia biogenesis and/or function. In a consanguineous family with JS associated with optic nerve coloboma, kidney hypoplasia, and polydactyly, combined exome sequencing and mapping identified a homozygous splice-site mutation in PDE6D, encoding a prenyl-binding protein. We found that pde6d depletion in zebrafish leads to renal and retinal developmental anomalies and wild-type but not mutant PDE6D is able to rescue this phenotype. Proteomic analysis identified INPP5E, whose mutations also lead to JS or mental retardation, obesity, congenital retinal dystrophy, and micropenis syndromes, as novel prenyl-dependent cargo of PDE6D. Mutant PDE6D shows reduced binding to INPP5E, which fails to localize to primary cilia in patient fibroblasts and tissues. Furthermore, mutant PDE6D is unable to bind to GTP-bound ARL3, which acts as a cargo-release factor for PDE6D-bound INPP5E. Altogether, these results indicate that PDE6D is required for INPP5E ciliary targeting and suggest a broader role for PDE6D in targeting other prenylated proteins to the cilia. This study identifies PDE6D as a novel JS disease gene and provides the first evidence of prenyl-binding-dependent trafficking in ciliopathies.

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