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Germline C1GALT1C1 mutation causes a multisystem chaperonopathy

Mutations in genes encoding molecular chaperones can lead to chaperonopathies, but none have so far been identified causing congenital disorders of glycosylation. Here we identified two maternal half-brothers with a novel chaperonopathy, causing impaired protein O-glycosylation. The patients have a...

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Autores principales: Erger, Florian, Aryal, Rajindra P., Reusch, Björn, Matsumoto, Yasuyuki, Meyer, Robert, Zeng, Junwei, Knopp, Cordula, Noel, Maxence, Muerner, Lukas, Wenzel, Andrea, Kohl, Stefan, Tschernoster, Nikolai, Rappl, Gunter, Rouvet, Isabelle, Schröder-Braunstein, Jutta, Seibert, Felix S., Thiele, Holger, Häusler, Martin G., Weber, Lutz T., Büttner-Herold, Maike, Elbracht, Miriam, Cummings, Sandra F., Altmüller, Janine, Habbig, Sandra, Cummings, Richard D., Beck, Bodo B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235935/
https://www.ncbi.nlm.nih.gov/pubmed/37216524
http://dx.doi.org/10.1073/pnas.2211087120
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author Erger, Florian
Aryal, Rajindra P.
Reusch, Björn
Matsumoto, Yasuyuki
Meyer, Robert
Zeng, Junwei
Knopp, Cordula
Noel, Maxence
Muerner, Lukas
Wenzel, Andrea
Kohl, Stefan
Tschernoster, Nikolai
Rappl, Gunter
Rouvet, Isabelle
Schröder-Braunstein, Jutta
Seibert, Felix S.
Thiele, Holger
Häusler, Martin G.
Weber, Lutz T.
Büttner-Herold, Maike
Elbracht, Miriam
Cummings, Sandra F.
Altmüller, Janine
Habbig, Sandra
Cummings, Richard D.
Beck, Bodo B.
author_facet Erger, Florian
Aryal, Rajindra P.
Reusch, Björn
Matsumoto, Yasuyuki
Meyer, Robert
Zeng, Junwei
Knopp, Cordula
Noel, Maxence
Muerner, Lukas
Wenzel, Andrea
Kohl, Stefan
Tschernoster, Nikolai
Rappl, Gunter
Rouvet, Isabelle
Schröder-Braunstein, Jutta
Seibert, Felix S.
Thiele, Holger
Häusler, Martin G.
Weber, Lutz T.
Büttner-Herold, Maike
Elbracht, Miriam
Cummings, Sandra F.
Altmüller, Janine
Habbig, Sandra
Cummings, Richard D.
Beck, Bodo B.
author_sort Erger, Florian
collection PubMed
description Mutations in genes encoding molecular chaperones can lead to chaperonopathies, but none have so far been identified causing congenital disorders of glycosylation. Here we identified two maternal half-brothers with a novel chaperonopathy, causing impaired protein O-glycosylation. The patients have a decreased activity of T-synthase (C1GALT1), an enzyme that exclusively synthesizes the T-antigen, a ubiquitous O-glycan core structure and precursor for all extended O-glycans. The T-synthase function is dependent on its specific molecular chaperone Cosmc, which is encoded by X-chromosomal C1GALT1C1. Both patients carry the hemizygous variant c.59C>A (p.Ala20Asp; A20D-Cosmc) in C1GALT1C1. They exhibit developmental delay, immunodeficiency, short stature, thrombocytopenia, and acute kidney injury (AKI) resembling atypical hemolytic uremic syndrome. Their heterozygous mother and maternal grandmother show an attenuated phenotype with skewed X-inactivation in blood. AKI in the male patients proved fully responsive to treatment with the complement inhibitor Eculizumab. This germline variant occurs within the transmembrane domain of Cosmc, resulting in dramatically reduced expression of the Cosmc protein. Although A20D-Cosmc is functional, its decreased expression, though in a cell or tissue-specific manner, causes a large reduction of T-synthase protein and activity, which accordingly leads to expression of varied amounts of pathological Tn-antigen (GalNAcα1-O-Ser/Thr/Tyr) on multiple glycoproteins. Transient transfection of patient lymphoblastoid cells with wild-type C1GALT1C1 partially rescued the T-synthase and glycosylation defect. Interestingly, all four affected individuals have high levels of galactose-deficient IgA1 in sera. These results demonstrate that the A20D-Cosmc mutation defines a novel O-glycan chaperonopathy and causes the altered O-glycosylation status in these patients.
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spelling pubmed-102359352023-11-22 Germline C1GALT1C1 mutation causes a multisystem chaperonopathy Erger, Florian Aryal, Rajindra P. Reusch, Björn Matsumoto, Yasuyuki Meyer, Robert Zeng, Junwei Knopp, Cordula Noel, Maxence Muerner, Lukas Wenzel, Andrea Kohl, Stefan Tschernoster, Nikolai Rappl, Gunter Rouvet, Isabelle Schröder-Braunstein, Jutta Seibert, Felix S. Thiele, Holger Häusler, Martin G. Weber, Lutz T. Büttner-Herold, Maike Elbracht, Miriam Cummings, Sandra F. Altmüller, Janine Habbig, Sandra Cummings, Richard D. Beck, Bodo B. Proc Natl Acad Sci U S A Biological Sciences Mutations in genes encoding molecular chaperones can lead to chaperonopathies, but none have so far been identified causing congenital disorders of glycosylation. Here we identified two maternal half-brothers with a novel chaperonopathy, causing impaired protein O-glycosylation. The patients have a decreased activity of T-synthase (C1GALT1), an enzyme that exclusively synthesizes the T-antigen, a ubiquitous O-glycan core structure and precursor for all extended O-glycans. The T-synthase function is dependent on its specific molecular chaperone Cosmc, which is encoded by X-chromosomal C1GALT1C1. Both patients carry the hemizygous variant c.59C>A (p.Ala20Asp; A20D-Cosmc) in C1GALT1C1. They exhibit developmental delay, immunodeficiency, short stature, thrombocytopenia, and acute kidney injury (AKI) resembling atypical hemolytic uremic syndrome. Their heterozygous mother and maternal grandmother show an attenuated phenotype with skewed X-inactivation in blood. AKI in the male patients proved fully responsive to treatment with the complement inhibitor Eculizumab. This germline variant occurs within the transmembrane domain of Cosmc, resulting in dramatically reduced expression of the Cosmc protein. Although A20D-Cosmc is functional, its decreased expression, though in a cell or tissue-specific manner, causes a large reduction of T-synthase protein and activity, which accordingly leads to expression of varied amounts of pathological Tn-antigen (GalNAcα1-O-Ser/Thr/Tyr) on multiple glycoproteins. Transient transfection of patient lymphoblastoid cells with wild-type C1GALT1C1 partially rescued the T-synthase and glycosylation defect. Interestingly, all four affected individuals have high levels of galactose-deficient IgA1 in sera. These results demonstrate that the A20D-Cosmc mutation defines a novel O-glycan chaperonopathy and causes the altered O-glycosylation status in these patients. National Academy of Sciences 2023-05-22 2023-05-30 /pmc/articles/PMC10235935/ /pubmed/37216524 http://dx.doi.org/10.1073/pnas.2211087120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/This article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Erger, Florian
Aryal, Rajindra P.
Reusch, Björn
Matsumoto, Yasuyuki
Meyer, Robert
Zeng, Junwei
Knopp, Cordula
Noel, Maxence
Muerner, Lukas
Wenzel, Andrea
Kohl, Stefan
Tschernoster, Nikolai
Rappl, Gunter
Rouvet, Isabelle
Schröder-Braunstein, Jutta
Seibert, Felix S.
Thiele, Holger
Häusler, Martin G.
Weber, Lutz T.
Büttner-Herold, Maike
Elbracht, Miriam
Cummings, Sandra F.
Altmüller, Janine
Habbig, Sandra
Cummings, Richard D.
Beck, Bodo B.
Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title_full Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title_fullStr Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title_full_unstemmed Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title_short Germline C1GALT1C1 mutation causes a multisystem chaperonopathy
title_sort germline c1galt1c1 mutation causes a multisystem chaperonopathy
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10235935/
https://www.ncbi.nlm.nih.gov/pubmed/37216524
http://dx.doi.org/10.1073/pnas.2211087120
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