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Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility

The clinical spectrum of ciliopathies affecting motile cilia spans impaired mucociliary clearance in the respiratory system, laterality defects including heart malformations, infertility and hydrocephalus. Using linkage analysis and whole exome sequencing, we identified two recessive loss-of-functio...

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Autores principales: Ta-Shma, Asaf, Hjeij, Rim, Perles, Zeev, Dougherty, Gerard W., Abu Zahira, Ibrahim, Letteboer, Stef J. F., Antony, Dinu, Darwish, Alaa, Mans, Dorus A., Spittler, Sabrina, Edelbusch, Christine, Cindrić, Sandra, Nöthe-Menchen, Tabea, Olbrich, Heike, Stuhlmann, Friederike, Aprea, Isabella, Pennekamp, Petra, Loges, Niki T., Breuer, Oded, Shaag, Avraham, Rein, Azaria J. J. T., Gulec, Elif Yilmaz, Gezdirici, Alper, Abitbul, Revital, Elias, Nael, Amirav, Israel, Schmidts, Miriam, Roepman, Ronald, Elpeleg, Orly, Omran, Heymut
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128653/
https://www.ncbi.nlm.nih.gov/pubmed/30148830
http://dx.doi.org/10.1371/journal.pgen.1007602
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author Ta-Shma, Asaf
Hjeij, Rim
Perles, Zeev
Dougherty, Gerard W.
Abu Zahira, Ibrahim
Letteboer, Stef J. F.
Antony, Dinu
Darwish, Alaa
Mans, Dorus A.
Spittler, Sabrina
Edelbusch, Christine
Cindrić, Sandra
Nöthe-Menchen, Tabea
Olbrich, Heike
Stuhlmann, Friederike
Aprea, Isabella
Pennekamp, Petra
Loges, Niki T.
Breuer, Oded
Shaag, Avraham
Rein, Azaria J. J. T.
Gulec, Elif Yilmaz
Gezdirici, Alper
Abitbul, Revital
Elias, Nael
Amirav, Israel
Schmidts, Miriam
Roepman, Ronald
Elpeleg, Orly
Omran, Heymut
author_facet Ta-Shma, Asaf
Hjeij, Rim
Perles, Zeev
Dougherty, Gerard W.
Abu Zahira, Ibrahim
Letteboer, Stef J. F.
Antony, Dinu
Darwish, Alaa
Mans, Dorus A.
Spittler, Sabrina
Edelbusch, Christine
Cindrić, Sandra
Nöthe-Menchen, Tabea
Olbrich, Heike
Stuhlmann, Friederike
Aprea, Isabella
Pennekamp, Petra
Loges, Niki T.
Breuer, Oded
Shaag, Avraham
Rein, Azaria J. J. T.
Gulec, Elif Yilmaz
Gezdirici, Alper
Abitbul, Revital
Elias, Nael
Amirav, Israel
Schmidts, Miriam
Roepman, Ronald
Elpeleg, Orly
Omran, Heymut
author_sort Ta-Shma, Asaf
collection PubMed
description The clinical spectrum of ciliopathies affecting motile cilia spans impaired mucociliary clearance in the respiratory system, laterality defects including heart malformations, infertility and hydrocephalus. Using linkage analysis and whole exome sequencing, we identified two recessive loss-of-function MNS1 mutations in five individuals from four consanguineous families: 1) a homozygous nonsense mutation p.Arg242* in four males with laterality defects and infertility and 2) a homozygous nonsense mutation p.Gln203* in one female with laterality defects and recurrent respiratory infections additionally carrying homozygous mutations in DNAH5. Consistent with the laterality defects observed in these individuals, we found Mns1 to be expressed in mouse embryonic ventral node. Immunofluorescence analysis further revealed that MNS1 localizes to the axonemes of respiratory cilia as well as sperm flagella in human. In-depth ultrastructural analyses confirmed a subtle outer dynein arm (ODA) defect in the axonemes of respiratory epithelial cells resembling findings reported in Mns1-deficient mice. Ultrastructural analyses in the female carrying combined mutations in MNS1 and DNAH5 indicated a role for MNS1 in the process of ODA docking (ODA-DC) in the distal respiratory axonemes. Furthermore, co-immunoprecipitation and yeast two hybrid analyses demonstrated that MNS1 dimerizes and interacts with the ODA docking complex component CCDC114. Overall, we demonstrate that MNS1 deficiency in humans causes laterality defects (situs inversus) and likely male infertility and that MNS1 plays a role in the ODA-DC assembly.
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spelling pubmed-61286532018-09-17 Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility Ta-Shma, Asaf Hjeij, Rim Perles, Zeev Dougherty, Gerard W. Abu Zahira, Ibrahim Letteboer, Stef J. F. Antony, Dinu Darwish, Alaa Mans, Dorus A. Spittler, Sabrina Edelbusch, Christine Cindrić, Sandra Nöthe-Menchen, Tabea Olbrich, Heike Stuhlmann, Friederike Aprea, Isabella Pennekamp, Petra Loges, Niki T. Breuer, Oded Shaag, Avraham Rein, Azaria J. J. T. Gulec, Elif Yilmaz Gezdirici, Alper Abitbul, Revital Elias, Nael Amirav, Israel Schmidts, Miriam Roepman, Ronald Elpeleg, Orly Omran, Heymut PLoS Genet Research Article The clinical spectrum of ciliopathies affecting motile cilia spans impaired mucociliary clearance in the respiratory system, laterality defects including heart malformations, infertility and hydrocephalus. Using linkage analysis and whole exome sequencing, we identified two recessive loss-of-function MNS1 mutations in five individuals from four consanguineous families: 1) a homozygous nonsense mutation p.Arg242* in four males with laterality defects and infertility and 2) a homozygous nonsense mutation p.Gln203* in one female with laterality defects and recurrent respiratory infections additionally carrying homozygous mutations in DNAH5. Consistent with the laterality defects observed in these individuals, we found Mns1 to be expressed in mouse embryonic ventral node. Immunofluorescence analysis further revealed that MNS1 localizes to the axonemes of respiratory cilia as well as sperm flagella in human. In-depth ultrastructural analyses confirmed a subtle outer dynein arm (ODA) defect in the axonemes of respiratory epithelial cells resembling findings reported in Mns1-deficient mice. Ultrastructural analyses in the female carrying combined mutations in MNS1 and DNAH5 indicated a role for MNS1 in the process of ODA docking (ODA-DC) in the distal respiratory axonemes. Furthermore, co-immunoprecipitation and yeast two hybrid analyses demonstrated that MNS1 dimerizes and interacts with the ODA docking complex component CCDC114. Overall, we demonstrate that MNS1 deficiency in humans causes laterality defects (situs inversus) and likely male infertility and that MNS1 plays a role in the ODA-DC assembly. Public Library of Science 2018-08-27 /pmc/articles/PMC6128653/ /pubmed/30148830 http://dx.doi.org/10.1371/journal.pgen.1007602 Text en © 2018 Ta-Shma et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ta-Shma, Asaf
Hjeij, Rim
Perles, Zeev
Dougherty, Gerard W.
Abu Zahira, Ibrahim
Letteboer, Stef J. F.
Antony, Dinu
Darwish, Alaa
Mans, Dorus A.
Spittler, Sabrina
Edelbusch, Christine
Cindrić, Sandra
Nöthe-Menchen, Tabea
Olbrich, Heike
Stuhlmann, Friederike
Aprea, Isabella
Pennekamp, Petra
Loges, Niki T.
Breuer, Oded
Shaag, Avraham
Rein, Azaria J. J. T.
Gulec, Elif Yilmaz
Gezdirici, Alper
Abitbul, Revital
Elias, Nael
Amirav, Israel
Schmidts, Miriam
Roepman, Ronald
Elpeleg, Orly
Omran, Heymut
Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title_full Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title_fullStr Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title_full_unstemmed Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title_short Homozygous loss-of-function mutations in MNS1 cause laterality defects and likely male infertility
title_sort homozygous loss-of-function mutations in mns1 cause laterality defects and likely male infertility
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6128653/
https://www.ncbi.nlm.nih.gov/pubmed/30148830
http://dx.doi.org/10.1371/journal.pgen.1007602
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