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The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes.


ABSTRACT: Mutations in microtubule-regulating genes are associated with disorders of neuronal migration and microcephaly. Regulation of centriole length has been shown to underlie the pathogenesis of certain ciliopathy phenotypes. Using a next-generation sequencing approach, we identified mutations in a novel centriolar disease gene in a kindred with an embryonic lethal ciliopathy phenotype and in a patient with primary microcephaly.Whole exome sequencing data from a non-consanguineous Caucasian kindred exhibiting mid-gestation lethality and ciliopathic malformations revealed two novel non-synonymous variants in CENPF, a microtubule-regulating gene. All four affected fetuses showed segregation for two mutated alleles [IVS5-2A>C, predicted to abolish the consensus splice-acceptor site from exon 6; c.1744G>T, p.E582X]. In a second unrelated patient exhibiting microcephaly, we identified two CENPF mutations [c.1744G>T, p.E582X; c.8692 C>T, p.R2898X] by whole exome sequencing. We found that CENP-F colocalised with Ninein at the subdistal appendages of the mother centriole in mouse inner medullary collecting duct cells. Intraflagellar transport protein-88 (IFT-88) colocalised with CENP-F along the ciliary axonemes of renal epithelial cells in age-matched control human fetuses but did not in truncated cilia of mutant CENPF kidneys. Pairwise co-immunoprecipitation assays of mitotic and serum-starved HEKT293 cells confirmed that IFT88 precipitates with endogenous CENP-F.Our data identify CENPF as a new centriolar disease gene implicated in severe human ciliopathy and microcephaly related phenotypes. CENP-F has a novel putative function in ciliogenesis and cortical neurogenesis.

SUBMITTER: Waters AM 

PROVIDER: S-EPMC4345935 | biostudies-literature | 2015 Mar

REPOSITORIES: biostudies-literature

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The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes.

Waters Aoife M AM   Asfahani Rowan R   Carroll Paula P   Bicknell Louise L   Lescai Francesco F   Bright Alison A   Chanudet Estelle E   Brooks Anthony A   Christou-Savina Sonja S   Osman Guled G   Walsh Patrick P   Bacchelli Chiara C   Chapgier Ariane A   Vernay Bertrand B   Bader David M DM   Deshpande Charu C   O' Sullivan Mary M   Ocaka Louise L   Stanescu Horia H   Stewart Helen S HS   Hildebrandt Friedhelm F   Otto Edgar E   Johnson Colin A CA   Szymanska Katarzyna K   Katsanis Nicholas N   Davis Erica E   Kleta Robert R   Hubank Mike M   Doxsey Stephen S   Jackson Andrew A   Stupka Elia E   Winey Mark M   Beales Philip L PL  

Journal of medical genetics 20150106 3


<h4>Background</h4>Mutations in microtubule-regulating genes are associated with disorders of neuronal migration and microcephaly. Regulation of centriole length has been shown to underlie the pathogenesis of certain ciliopathy phenotypes. Using a next-generation sequencing approach, we identified mutations in a novel centriolar disease gene in a kindred with an embryonic lethal ciliopathy phenotype and in a patient with primary microcephaly.<h4>Methods and results</h4>Whole exome sequencing dat  ...[more]

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