Cargando…

Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm

BACKGROUND: Primary ciliary dyskinesia (PCD) is a rare, genetically heterogeneous ciliopathy disorder affecting cilia and sperm motility. A range of ultrastructural defects of the axoneme underlie the disease, which is characterised by chronic respiratory symptoms and obstructive lung disease, infer...

Descripción completa

Detalles Bibliográficos
Autores principales: Onoufriadis, Alexandros, Shoemark, Amelia, Munye, Mustafa M, James, Chela T, Schmidts, Miriam, Patel, Mitali, Rosser, Elisabeth M, Bacchelli, Chiara, Beales, Philip L, Scambler, Peter J, Hart, Stephen L, Danke-Roelse, Jeannette E, Sloper, John J, Hull, Sarah, Hogg, Claire, Emes, Richard D, Pals, Gerard, Moore, Anthony T, Chung, Eddie M K, Mitchison, Hannah M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BMJ Publishing Group 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3888613/
https://www.ncbi.nlm.nih.gov/pubmed/24203976
http://dx.doi.org/10.1136/jmedgenet-2013-101938
_version_ 1782299083822596096
author Onoufriadis, Alexandros
Shoemark, Amelia
Munye, Mustafa M
James, Chela T
Schmidts, Miriam
Patel, Mitali
Rosser, Elisabeth M
Bacchelli, Chiara
Beales, Philip L
Scambler, Peter J
Hart, Stephen L
Danke-Roelse, Jeannette E
Sloper, John J
Hull, Sarah
Hogg, Claire
Emes, Richard D
Pals, Gerard
Moore, Anthony T
Chung, Eddie M K
Mitchison, Hannah M
author_facet Onoufriadis, Alexandros
Shoemark, Amelia
Munye, Mustafa M
James, Chela T
Schmidts, Miriam
Patel, Mitali
Rosser, Elisabeth M
Bacchelli, Chiara
Beales, Philip L
Scambler, Peter J
Hart, Stephen L
Danke-Roelse, Jeannette E
Sloper, John J
Hull, Sarah
Hogg, Claire
Emes, Richard D
Pals, Gerard
Moore, Anthony T
Chung, Eddie M K
Mitchison, Hannah M
author_sort Onoufriadis, Alexandros
collection PubMed
description BACKGROUND: Primary ciliary dyskinesia (PCD) is a rare, genetically heterogeneous ciliopathy disorder affecting cilia and sperm motility. A range of ultrastructural defects of the axoneme underlie the disease, which is characterised by chronic respiratory symptoms and obstructive lung disease, infertility and body axis laterality defects. We applied a next-generation sequencing approach to identify the gene responsible for this phenotype in two consanguineous families. METHODS AND RESULTS: Data from whole-exome sequencing in a consanguineous Turkish family, and whole-genome sequencing in the obligate carrier parents of a consanguineous Pakistani family was combined to identify homozygous loss-of-function mutations in ARMC4, segregating in all five affected individuals from both families. Both families carried nonsense mutations within the highly conserved armadillo repeat region of ARMC4: c.2675C>A; pSer892* and c.1972G>T; p.Glu658*. A deficiency of ARMC4 protein was seen in patient's respiratory cilia accompanied by loss of the distal outer dynein arm motors responsible for generating ciliary beating, giving rise to cilia immotility. ARMC4 gene expression is upregulated during ciliogenesis, and we found a predicted interaction with the outer dynein arm protein DNAI2, mutations in which also cause PCD. CONCLUSIONS: We report the first use of whole-genome sequencing to identify gene mutations causing PCD. Loss-of-function mutations in ARMC4 cause PCD with situs inversus and cilia immotility, associated with a loss of the distal outer (but not inner) dynein arms. This addition of ARMC4 to the list of genes associated with ciliary outer dynein arm defects expands our understanding of the complexities of PCD genetics.
format Online
Article
Text
id pubmed-3888613
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher BMJ Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-38886132014-01-14 Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm Onoufriadis, Alexandros Shoemark, Amelia Munye, Mustafa M James, Chela T Schmidts, Miriam Patel, Mitali Rosser, Elisabeth M Bacchelli, Chiara Beales, Philip L Scambler, Peter J Hart, Stephen L Danke-Roelse, Jeannette E Sloper, John J Hull, Sarah Hogg, Claire Emes, Richard D Pals, Gerard Moore, Anthony T Chung, Eddie M K Mitchison, Hannah M J Med Genet New Loci BACKGROUND: Primary ciliary dyskinesia (PCD) is a rare, genetically heterogeneous ciliopathy disorder affecting cilia and sperm motility. A range of ultrastructural defects of the axoneme underlie the disease, which is characterised by chronic respiratory symptoms and obstructive lung disease, infertility and body axis laterality defects. We applied a next-generation sequencing approach to identify the gene responsible for this phenotype in two consanguineous families. METHODS AND RESULTS: Data from whole-exome sequencing in a consanguineous Turkish family, and whole-genome sequencing in the obligate carrier parents of a consanguineous Pakistani family was combined to identify homozygous loss-of-function mutations in ARMC4, segregating in all five affected individuals from both families. Both families carried nonsense mutations within the highly conserved armadillo repeat region of ARMC4: c.2675C>A; pSer892* and c.1972G>T; p.Glu658*. A deficiency of ARMC4 protein was seen in patient's respiratory cilia accompanied by loss of the distal outer dynein arm motors responsible for generating ciliary beating, giving rise to cilia immotility. ARMC4 gene expression is upregulated during ciliogenesis, and we found a predicted interaction with the outer dynein arm protein DNAI2, mutations in which also cause PCD. CONCLUSIONS: We report the first use of whole-genome sequencing to identify gene mutations causing PCD. Loss-of-function mutations in ARMC4 cause PCD with situs inversus and cilia immotility, associated with a loss of the distal outer (but not inner) dynein arms. This addition of ARMC4 to the list of genes associated with ciliary outer dynein arm defects expands our understanding of the complexities of PCD genetics. BMJ Publishing Group 2014-01 2013-11-07 /pmc/articles/PMC3888613/ /pubmed/24203976 http://dx.doi.org/10.1136/jmedgenet-2013-101938 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 Creative Commons Attribution Non Commercial (CC BY-NC 3.0) license, which permits others to distribute, remix, adapt, build upon this work non-commercially, and license their derivative works on different terms, provided the original work is properly cited and the use is non-commercial. See: http://creativecommons.org/licenses/by-nc/3.0/
spellingShingle New Loci
Onoufriadis, Alexandros
Shoemark, Amelia
Munye, Mustafa M
James, Chela T
Schmidts, Miriam
Patel, Mitali
Rosser, Elisabeth M
Bacchelli, Chiara
Beales, Philip L
Scambler, Peter J
Hart, Stephen L
Danke-Roelse, Jeannette E
Sloper, John J
Hull, Sarah
Hogg, Claire
Emes, Richard D
Pals, Gerard
Moore, Anthony T
Chung, Eddie M K
Mitchison, Hannah M
Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title_full Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title_fullStr Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title_full_unstemmed Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title_short Combined exome and whole-genome sequencing identifies mutations in ARMC4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
title_sort combined exome and whole-genome sequencing identifies mutations in armc4 as a cause of primary ciliary dyskinesia with defects in the outer dynein arm
topic New Loci
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3888613/
https://www.ncbi.nlm.nih.gov/pubmed/24203976
http://dx.doi.org/10.1136/jmedgenet-2013-101938
work_keys_str_mv AT onoufriadisalexandros combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT shoemarkamelia combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT munyemustafam combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT jameschelat combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT schmidtsmiriam combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT patelmitali combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT rosserelisabethm combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT bacchellichiara combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT bealesphilipl combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT scamblerpeterj combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT hartstephenl combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT dankeroelsejeannettee combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT sloperjohnj combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT hullsarah combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT hoggclaire combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT emesrichardd combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT palsgerard combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT mooreanthonyt combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT chungeddiemk combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm
AT mitchisonhannahm combinedexomeandwholegenomesequencingidentifiesmutationsinarmc4asacauseofprimaryciliarydyskinesiawithdefectsintheouterdyneinarm