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TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes
The Joubert-Meckel syndrome spectrum is a continuum of recessive ciliopathy conditions caused by primary cilium dysfunction. The primary cilium is a microtubule-based, antenna-like organelle that projects from the surface of most human cell types, allowing them to respond to extracellular signals. T...
Autores principales: | , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8009330/ https://www.ncbi.nlm.nih.gov/pubmed/33791682 http://dx.doi.org/10.1016/j.xhgg.2020.100016 |
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author | Van De Weghe, Julie C. Giordano, Jessica L. Mathijssen, Inge B. Mojarrad, Majid Lugtenberg, Dorien Miller, Caitlin V. Dempsey, Jennifer C. Mohajeri, Mahsa Sadat Asl van Leeuwen, Elizabeth Pajkrt, Eva Klaver, Caroline C.W. Houlden, Henry Eslahi, Atieh Waters, Aoife M. Bamshad, Michael J. Nickerson, Deborah A. Aggarwal, Vimla S. de Vries, Bert B.A. Maroofian, Reza Doherty, Dan |
author_facet | Van De Weghe, Julie C. Giordano, Jessica L. Mathijssen, Inge B. Mojarrad, Majid Lugtenberg, Dorien Miller, Caitlin V. Dempsey, Jennifer C. Mohajeri, Mahsa Sadat Asl van Leeuwen, Elizabeth Pajkrt, Eva Klaver, Caroline C.W. Houlden, Henry Eslahi, Atieh Waters, Aoife M. Bamshad, Michael J. Nickerson, Deborah A. Aggarwal, Vimla S. de Vries, Bert B.A. Maroofian, Reza Doherty, Dan |
author_sort | Van De Weghe, Julie C. |
collection | PubMed |
description | The Joubert-Meckel syndrome spectrum is a continuum of recessive ciliopathy conditions caused by primary cilium dysfunction. The primary cilium is a microtubule-based, antenna-like organelle that projects from the surface of most human cell types, allowing them to respond to extracellular signals. The cilium is partitioned from the cell body by the transition zone, a known hotspot for ciliopathy-related proteins. Despite years of Joubert syndrome (JBTS) gene discovery, the genetic cause cannot be identified in up to 30% of individuals with JBTS, depending on the cohort, sequencing method, and criteria for pathogenic variants. Using exome and targeted sequencing of 655 families with JBTS, we identified three individuals from two families harboring biallelic, rare, predicted-deleterious missense TMEM218 variants. Via MatchMaker Exchange, we identified biallelic TMEM218 variants in four additional families with ciliopathy phenotypes. Of note, four of the six families carry missense variants affecting the same highly conserved amino acid position 115. Clinical features included the molar tooth sign (N = 2), occipital encephalocele (N = 5, all fetuses), retinal dystrophy (N = 4, all living individuals), polycystic kidneys (N = 2), and polydactyly (N = 2), without liver involvement. Combined with existing functional data linking TMEM218 to ciliary transition zone function, our human genetic data make a strong case for TMEM218 dysfunction as a cause of ciliopathy phenotypes including JBTS with retinal dystrophy and Meckel syndrome. Identifying all genetic causes of the Joubert-Meckel spectrum enables diagnostic testing, prognostic and recurrence risk counseling, and medical monitoring, as well as work to delineate the underlying biological mechanisms and identify targets for future therapies. |
format | Online Article Text |
id | pubmed-8009330 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-80093302021-03-30 TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes Van De Weghe, Julie C. Giordano, Jessica L. Mathijssen, Inge B. Mojarrad, Majid Lugtenberg, Dorien Miller, Caitlin V. Dempsey, Jennifer C. Mohajeri, Mahsa Sadat Asl van Leeuwen, Elizabeth Pajkrt, Eva Klaver, Caroline C.W. Houlden, Henry Eslahi, Atieh Waters, Aoife M. Bamshad, Michael J. Nickerson, Deborah A. Aggarwal, Vimla S. de Vries, Bert B.A. Maroofian, Reza Doherty, Dan HGG Adv Article The Joubert-Meckel syndrome spectrum is a continuum of recessive ciliopathy conditions caused by primary cilium dysfunction. The primary cilium is a microtubule-based, antenna-like organelle that projects from the surface of most human cell types, allowing them to respond to extracellular signals. The cilium is partitioned from the cell body by the transition zone, a known hotspot for ciliopathy-related proteins. Despite years of Joubert syndrome (JBTS) gene discovery, the genetic cause cannot be identified in up to 30% of individuals with JBTS, depending on the cohort, sequencing method, and criteria for pathogenic variants. Using exome and targeted sequencing of 655 families with JBTS, we identified three individuals from two families harboring biallelic, rare, predicted-deleterious missense TMEM218 variants. Via MatchMaker Exchange, we identified biallelic TMEM218 variants in four additional families with ciliopathy phenotypes. Of note, four of the six families carry missense variants affecting the same highly conserved amino acid position 115. Clinical features included the molar tooth sign (N = 2), occipital encephalocele (N = 5, all fetuses), retinal dystrophy (N = 4, all living individuals), polycystic kidneys (N = 2), and polydactyly (N = 2), without liver involvement. Combined with existing functional data linking TMEM218 to ciliary transition zone function, our human genetic data make a strong case for TMEM218 dysfunction as a cause of ciliopathy phenotypes including JBTS with retinal dystrophy and Meckel syndrome. Identifying all genetic causes of the Joubert-Meckel spectrum enables diagnostic testing, prognostic and recurrence risk counseling, and medical monitoring, as well as work to delineate the underlying biological mechanisms and identify targets for future therapies. Elsevier 2020-11-21 /pmc/articles/PMC8009330/ /pubmed/33791682 http://dx.doi.org/10.1016/j.xhgg.2020.100016 Text en © 2020 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Article Van De Weghe, Julie C. Giordano, Jessica L. Mathijssen, Inge B. Mojarrad, Majid Lugtenberg, Dorien Miller, Caitlin V. Dempsey, Jennifer C. Mohajeri, Mahsa Sadat Asl van Leeuwen, Elizabeth Pajkrt, Eva Klaver, Caroline C.W. Houlden, Henry Eslahi, Atieh Waters, Aoife M. Bamshad, Michael J. Nickerson, Deborah A. Aggarwal, Vimla S. de Vries, Bert B.A. Maroofian, Reza Doherty, Dan TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title | TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title_full | TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title_fullStr | TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title_full_unstemmed | TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title_short | TMEM218 dysfunction causes ciliopathies, including Joubert and Meckel syndromes |
title_sort | tmem218 dysfunction causes ciliopathies, including joubert and meckel syndromes |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8009330/ https://www.ncbi.nlm.nih.gov/pubmed/33791682 http://dx.doi.org/10.1016/j.xhgg.2020.100016 |
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