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Hypomorphic mutations of TRIP11 cause odontochondrodysplasia

Odontochondrodysplasia (ODCD) is an unresolved genetic disorder of skeletal and dental development. Here, we show that ODCD is caused by hypomorphic TRIP11 mutations, and we identify ODCD as the nonlethal counterpart to achondrogenesis 1A (ACG1A), the known null phenotype in humans. TRIP11 encodes G...

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Autores principales: Wehrle, Anika, Witkos, Tomasz M., Unger, Sheila, Schneider, Judith, Follit, John A., Hermann, Johannes, Welting, Tim, Fano, Virginia, Hietala, Marja, Vatanavicharn, Nithiwat, Schoner, Katharina, Spranger, Jürgen, Schmidts, Miriam, Zabel, Bernhard, Pazour, Gregory J., Bloch-Zupan, Agnes, Nishimura, Gen, Superti-Furga, Andrea, Lowe, Martin, Lausch, Ekkehart
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413787/
https://www.ncbi.nlm.nih.gov/pubmed/30728324
http://dx.doi.org/10.1172/jci.insight.124701
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author Wehrle, Anika
Witkos, Tomasz M.
Unger, Sheila
Schneider, Judith
Follit, John A.
Hermann, Johannes
Welting, Tim
Fano, Virginia
Hietala, Marja
Vatanavicharn, Nithiwat
Schoner, Katharina
Spranger, Jürgen
Schmidts, Miriam
Zabel, Bernhard
Pazour, Gregory J.
Bloch-Zupan, Agnes
Nishimura, Gen
Superti-Furga, Andrea
Lowe, Martin
Lausch, Ekkehart
author_facet Wehrle, Anika
Witkos, Tomasz M.
Unger, Sheila
Schneider, Judith
Follit, John A.
Hermann, Johannes
Welting, Tim
Fano, Virginia
Hietala, Marja
Vatanavicharn, Nithiwat
Schoner, Katharina
Spranger, Jürgen
Schmidts, Miriam
Zabel, Bernhard
Pazour, Gregory J.
Bloch-Zupan, Agnes
Nishimura, Gen
Superti-Furga, Andrea
Lowe, Martin
Lausch, Ekkehart
author_sort Wehrle, Anika
collection PubMed
description Odontochondrodysplasia (ODCD) is an unresolved genetic disorder of skeletal and dental development. Here, we show that ODCD is caused by hypomorphic TRIP11 mutations, and we identify ODCD as the nonlethal counterpart to achondrogenesis 1A (ACG1A), the known null phenotype in humans. TRIP11 encodes Golgi-associated microtubule-binding protein 210 (GMAP-210), an essential tether protein of the Golgi apparatus that physically interacts with intraflagellar transport 20 (IFT20), a component of the ciliary intraflagellar transport complex B. This association and extraskeletal disease manifestations in ODCD point to a cilium-dependent pathogenesis. However, our functional studies in patient-derived primary cells clearly support a Golgi-based disease mechanism. In spite of reduced abundance, residual GMAP variants maintain partial Golgi integrity, normal global protein secretion, and subcellular distribution of IFT20 in ODCD. These functions are lost when GMAP-210 is completely abrogated in ACG1A. However, a similar defect in chondrocyte maturation is observed in both disorders, which produces a cellular achondrogenesis phenotype of different severity, ensuing from aberrant glycan processing and impaired extracellular matrix proteoglycan secretion by the Golgi apparatus.
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spelling pubmed-64137872019-04-05 Hypomorphic mutations of TRIP11 cause odontochondrodysplasia Wehrle, Anika Witkos, Tomasz M. Unger, Sheila Schneider, Judith Follit, John A. Hermann, Johannes Welting, Tim Fano, Virginia Hietala, Marja Vatanavicharn, Nithiwat Schoner, Katharina Spranger, Jürgen Schmidts, Miriam Zabel, Bernhard Pazour, Gregory J. Bloch-Zupan, Agnes Nishimura, Gen Superti-Furga, Andrea Lowe, Martin Lausch, Ekkehart JCI Insight Research Article Odontochondrodysplasia (ODCD) is an unresolved genetic disorder of skeletal and dental development. Here, we show that ODCD is caused by hypomorphic TRIP11 mutations, and we identify ODCD as the nonlethal counterpart to achondrogenesis 1A (ACG1A), the known null phenotype in humans. TRIP11 encodes Golgi-associated microtubule-binding protein 210 (GMAP-210), an essential tether protein of the Golgi apparatus that physically interacts with intraflagellar transport 20 (IFT20), a component of the ciliary intraflagellar transport complex B. This association and extraskeletal disease manifestations in ODCD point to a cilium-dependent pathogenesis. However, our functional studies in patient-derived primary cells clearly support a Golgi-based disease mechanism. In spite of reduced abundance, residual GMAP variants maintain partial Golgi integrity, normal global protein secretion, and subcellular distribution of IFT20 in ODCD. These functions are lost when GMAP-210 is completely abrogated in ACG1A. However, a similar defect in chondrocyte maturation is observed in both disorders, which produces a cellular achondrogenesis phenotype of different severity, ensuing from aberrant glycan processing and impaired extracellular matrix proteoglycan secretion by the Golgi apparatus. American Society for Clinical Investigation 2019-02-07 /pmc/articles/PMC6413787/ /pubmed/30728324 http://dx.doi.org/10.1172/jci.insight.124701 Text en Copyright © 2019 Wehrle et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Wehrle, Anika
Witkos, Tomasz M.
Unger, Sheila
Schneider, Judith
Follit, John A.
Hermann, Johannes
Welting, Tim
Fano, Virginia
Hietala, Marja
Vatanavicharn, Nithiwat
Schoner, Katharina
Spranger, Jürgen
Schmidts, Miriam
Zabel, Bernhard
Pazour, Gregory J.
Bloch-Zupan, Agnes
Nishimura, Gen
Superti-Furga, Andrea
Lowe, Martin
Lausch, Ekkehart
Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title_full Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title_fullStr Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title_full_unstemmed Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title_short Hypomorphic mutations of TRIP11 cause odontochondrodysplasia
title_sort hypomorphic mutations of trip11 cause odontochondrodysplasia
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6413787/
https://www.ncbi.nlm.nih.gov/pubmed/30728324
http://dx.doi.org/10.1172/jci.insight.124701
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