Cargando…

CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking

The transmembrane domain recognition complex (TRC) pathway is required for the insertion of C-terminal tail-anchored (TA) proteins into the lipid bilayer of specific intracellular organelles such as the endoplasmic reticulum (ER) membrane. In order to facilitate correct insertion, the recognition co...

Descripción completa

Detalles Bibliográficos
Autores principales: Wilson, Matthew P, Durin, Zoé, Unal, Özlem, Ng, Bobby G, Marrecau, Thomas, Keldermans, Liesbeth, Souche, Erika, Rymen, Daisy, Gündüz, Mehmet, Köse, Gülşen, Sturiale, Luisa, Garozzo, Domenico, Freeze, Hudson H, Jaeken, Jaak, Foulquier, François, Matthijs, Gert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9396942/
https://www.ncbi.nlm.nih.gov/pubmed/35262690
http://dx.doi.org/10.1093/hmg/ddac055
_version_ 1784772027087847424
author Wilson, Matthew P
Durin, Zoé
Unal, Özlem
Ng, Bobby G
Marrecau, Thomas
Keldermans, Liesbeth
Souche, Erika
Rymen, Daisy
Gündüz, Mehmet
Köse, Gülşen
Sturiale, Luisa
Garozzo, Domenico
Freeze, Hudson H
Jaeken, Jaak
Foulquier, François
Matthijs, Gert
author_facet Wilson, Matthew P
Durin, Zoé
Unal, Özlem
Ng, Bobby G
Marrecau, Thomas
Keldermans, Liesbeth
Souche, Erika
Rymen, Daisy
Gündüz, Mehmet
Köse, Gülşen
Sturiale, Luisa
Garozzo, Domenico
Freeze, Hudson H
Jaeken, Jaak
Foulquier, François
Matthijs, Gert
author_sort Wilson, Matthew P
collection PubMed
description The transmembrane domain recognition complex (TRC) pathway is required for the insertion of C-terminal tail-anchored (TA) proteins into the lipid bilayer of specific intracellular organelles such as the endoplasmic reticulum (ER) membrane. In order to facilitate correct insertion, the recognition complex (consisting of BAG6, GET4 and UBL4A) must first bind to TA proteins and then to GET3 (TRC40, ASNA1), which chaperones the protein to the ER membrane. Subsequently, GET1 (WRB) and CAML form a receptor that enables integration of the TA protein within the lipid bilayer. We report an individual with the homozygous c.633 + 4A>G splice variant in CAMLG, encoding CAML. This variant leads to aberrant splicing and lack of functional protein in patient-derived fibroblasts. The patient displays a predominantly neurological phenotype with psychomotor disability, hypotonia, epilepsy and structural brain abnormalities. Biochemically, a combined O-linked and type II N-linked glycosylation defect was found. Mislocalization of syntaxin-5 in patient fibroblasts and in siCAMLG deleted Hela cells confirms this as a consistent cellular marker of TRC dysfunction. Interestingly, the level of the v-SNARE Bet1L is also drastically reduced in both of these models, indicating a fundamental role of the TRC complex in the assembly of Golgi SNARE complexes. It also points towards a possible mechanism behind the hyposialylation of N and O-glycans. This is the first reported patient with pathogenic variants in CAMLG. CAMLG-CDG is the third disorder, after GET4 and GET3 deficiencies, caused by pathogenic variants in a member of the TRC pathway, further expanding this novel group of disorders.
format Online
Article
Text
id pubmed-9396942
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-93969422022-08-23 CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking Wilson, Matthew P Durin, Zoé Unal, Özlem Ng, Bobby G Marrecau, Thomas Keldermans, Liesbeth Souche, Erika Rymen, Daisy Gündüz, Mehmet Köse, Gülşen Sturiale, Luisa Garozzo, Domenico Freeze, Hudson H Jaeken, Jaak Foulquier, François Matthijs, Gert Hum Mol Genet Original Article The transmembrane domain recognition complex (TRC) pathway is required for the insertion of C-terminal tail-anchored (TA) proteins into the lipid bilayer of specific intracellular organelles such as the endoplasmic reticulum (ER) membrane. In order to facilitate correct insertion, the recognition complex (consisting of BAG6, GET4 and UBL4A) must first bind to TA proteins and then to GET3 (TRC40, ASNA1), which chaperones the protein to the ER membrane. Subsequently, GET1 (WRB) and CAML form a receptor that enables integration of the TA protein within the lipid bilayer. We report an individual with the homozygous c.633 + 4A>G splice variant in CAMLG, encoding CAML. This variant leads to aberrant splicing and lack of functional protein in patient-derived fibroblasts. The patient displays a predominantly neurological phenotype with psychomotor disability, hypotonia, epilepsy and structural brain abnormalities. Biochemically, a combined O-linked and type II N-linked glycosylation defect was found. Mislocalization of syntaxin-5 in patient fibroblasts and in siCAMLG deleted Hela cells confirms this as a consistent cellular marker of TRC dysfunction. Interestingly, the level of the v-SNARE Bet1L is also drastically reduced in both of these models, indicating a fundamental role of the TRC complex in the assembly of Golgi SNARE complexes. It also points towards a possible mechanism behind the hyposialylation of N and O-glycans. This is the first reported patient with pathogenic variants in CAMLG. CAMLG-CDG is the third disorder, after GET4 and GET3 deficiencies, caused by pathogenic variants in a member of the TRC pathway, further expanding this novel group of disorders. Oxford University Press 2022-03-09 /pmc/articles/PMC9396942/ /pubmed/35262690 http://dx.doi.org/10.1093/hmg/ddac055 Text en © The Author(s) 2022. Published by Oxford University Press. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Article
Wilson, Matthew P
Durin, Zoé
Unal, Özlem
Ng, Bobby G
Marrecau, Thomas
Keldermans, Liesbeth
Souche, Erika
Rymen, Daisy
Gündüz, Mehmet
Köse, Gülşen
Sturiale, Luisa
Garozzo, Domenico
Freeze, Hudson H
Jaeken, Jaak
Foulquier, François
Matthijs, Gert
CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title_full CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title_fullStr CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title_full_unstemmed CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title_short CAMLG-CDG: a novel congenital disorder of glycosylation linked to defective membrane trafficking
title_sort camlg-cdg: a novel congenital disorder of glycosylation linked to defective membrane trafficking
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9396942/
https://www.ncbi.nlm.nih.gov/pubmed/35262690
http://dx.doi.org/10.1093/hmg/ddac055
work_keys_str_mv AT wilsonmatthewp camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT durinzoe camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT unalozlem camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT ngbobbyg camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT marrecauthomas camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT keldermansliesbeth camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT soucheerika camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT rymendaisy camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT gunduzmehmet camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT kosegulsen camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT sturialeluisa camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT garozzodomenico camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT freezehudsonh camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT jaekenjaak camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT foulquierfrancois camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking
AT matthijsgert camlgcdganovelcongenitaldisorderofglycosylationlinkedtodefectivemembranetrafficking