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The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes
BACKGROUND: 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 mutation...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
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BMJ Publishing Group
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345935/ https://www.ncbi.nlm.nih.gov/pubmed/25564561 http://dx.doi.org/10.1136/jmedgenet-2014-102691 |
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author | Waters, Aoife M Asfahani, Rowan Carroll, Paula Bicknell, Louise Lescai, Francesco Bright, Alison Chanudet, Estelle Brooks, Anthony Christou-Savina, Sonja Osman, Guled Walsh, Patrick Bacchelli, Chiara Chapgier, Ariane Vernay, Bertrand Bader, David M Deshpande, Charu O’ Sullivan, Mary Ocaka, Louise Stanescu, Horia Stewart, Helen S Hildebrandt, Friedhelm Otto, Edgar Johnson, Colin A Szymanska, Katarzyna Katsanis, Nicholas Davis, Erica Kleta, Robert Hubank, Mike Doxsey, Stephen Jackson, Andrew Stupka, Elia Winey, Mark Beales, Philip L |
author_facet | Waters, Aoife M Asfahani, Rowan Carroll, Paula Bicknell, Louise Lescai, Francesco Bright, Alison Chanudet, Estelle Brooks, Anthony Christou-Savina, Sonja Osman, Guled Walsh, Patrick Bacchelli, Chiara Chapgier, Ariane Vernay, Bertrand Bader, David M Deshpande, Charu O’ Sullivan, Mary Ocaka, Louise Stanescu, Horia Stewart, Helen S Hildebrandt, Friedhelm Otto, Edgar Johnson, Colin A Szymanska, Katarzyna Katsanis, Nicholas Davis, Erica Kleta, Robert Hubank, Mike Doxsey, Stephen Jackson, Andrew Stupka, Elia Winey, Mark Beales, Philip L |
author_sort | Waters, Aoife M |
collection | PubMed |
description | BACKGROUND: 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. METHODS AND RESULTS: 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. CONCLUSIONS: 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. |
format | Online Article Text |
id | pubmed-4345935 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
publisher | BMJ Publishing Group |
record_format | MEDLINE/PubMed |
spelling | pubmed-43459352015-03-18 The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes Waters, Aoife M Asfahani, Rowan Carroll, Paula Bicknell, Louise Lescai, Francesco Bright, Alison Chanudet, Estelle Brooks, Anthony Christou-Savina, Sonja Osman, Guled Walsh, Patrick Bacchelli, Chiara Chapgier, Ariane Vernay, Bertrand Bader, David M Deshpande, Charu O’ Sullivan, Mary Ocaka, Louise Stanescu, Horia Stewart, Helen S Hildebrandt, Friedhelm Otto, Edgar Johnson, Colin A Szymanska, Katarzyna Katsanis, Nicholas Davis, Erica Kleta, Robert Hubank, Mike Doxsey, Stephen Jackson, Andrew Stupka, Elia Winey, Mark Beales, Philip L J Med Genet Developmental Defects BACKGROUND: 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. METHODS AND RESULTS: 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. CONCLUSIONS: 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. BMJ Publishing Group 2015-03 2015-01-06 /pmc/articles/PMC4345935/ /pubmed/25564561 http://dx.doi.org/10.1136/jmedgenet-2014-102691 Text en Published by the BMJ Publishing Group Limited. For permission to use (where not already granted under a licence) please go to http://group.bmj.com/group/rights-licensing/permissions This is an Open Access article distributed in accordance with the terms of the Creative Commons Attribution (CC BY 4.0) license, which permits others to distribute, remix, adapt and build upon this work, for commercial use, provided the original work is properly cited. See: http://creativecommons.org/licenses/by/4.0/ |
spellingShingle | Developmental Defects Waters, Aoife M Asfahani, Rowan Carroll, Paula Bicknell, Louise Lescai, Francesco Bright, Alison Chanudet, Estelle Brooks, Anthony Christou-Savina, Sonja Osman, Guled Walsh, Patrick Bacchelli, Chiara Chapgier, Ariane Vernay, Bertrand Bader, David M Deshpande, Charu O’ Sullivan, Mary Ocaka, Louise Stanescu, Horia Stewart, Helen S Hildebrandt, Friedhelm Otto, Edgar Johnson, Colin A Szymanska, Katarzyna Katsanis, Nicholas Davis, Erica Kleta, Robert Hubank, Mike Doxsey, Stephen Jackson, Andrew Stupka, Elia Winey, Mark Beales, Philip L The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title | The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title_full | The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title_fullStr | The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title_full_unstemmed | The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title_short | The kinetochore protein, CENPF, is mutated in human ciliopathy and microcephaly phenotypes |
title_sort | kinetochore protein, cenpf, is mutated in human ciliopathy and microcephaly phenotypes |
topic | Developmental Defects |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4345935/ https://www.ncbi.nlm.nih.gov/pubmed/25564561 http://dx.doi.org/10.1136/jmedgenet-2014-102691 |
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