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A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis

OBJECTIVE: GALNT2, encoding polypeptide N-acetylgalactosaminyltransferase 2 (GalNAc-T2), was initially discovered as a regulator of high-density lipoprotein metabolism. GalNAc-T2 is known to exert these effects through post-translational modification, i.e., O-linked glycosylation of secreted protein...

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Autores principales: Verzijl, Cristy R.C., Oldoni, Federico, Loaiza, Natalia, Wolters, Justina C., Rimbert, Antoine, Tian, E., Yang, Weiming, Struik, Dicky, Smit, Marieke, Kloosterhuis, Niels J., Fernandez, Amy J., Samara, Nadine L., Ten Hagen, Kelly G., Dalal, Kruti, Chernish, Aliona, McCluggage, Peggy, Tabak, Lawrence A., Jonker, Johan W., Kuivenhoven, Jan Albert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9019398/
https://www.ncbi.nlm.nih.gov/pubmed/35304331
http://dx.doi.org/10.1016/j.molmet.2022.101472
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author Verzijl, Cristy R.C.
Oldoni, Federico
Loaiza, Natalia
Wolters, Justina C.
Rimbert, Antoine
Tian, E.
Yang, Weiming
Struik, Dicky
Smit, Marieke
Kloosterhuis, Niels J.
Fernandez, Amy J.
Samara, Nadine L.
Ten Hagen, Kelly G.
Dalal, Kruti
Chernish, Aliona
McCluggage, Peggy
Tabak, Lawrence A.
Jonker, Johan W.
Kuivenhoven, Jan Albert
author_facet Verzijl, Cristy R.C.
Oldoni, Federico
Loaiza, Natalia
Wolters, Justina C.
Rimbert, Antoine
Tian, E.
Yang, Weiming
Struik, Dicky
Smit, Marieke
Kloosterhuis, Niels J.
Fernandez, Amy J.
Samara, Nadine L.
Ten Hagen, Kelly G.
Dalal, Kruti
Chernish, Aliona
McCluggage, Peggy
Tabak, Lawrence A.
Jonker, Johan W.
Kuivenhoven, Jan Albert
author_sort Verzijl, Cristy R.C.
collection PubMed
description OBJECTIVE: GALNT2, encoding polypeptide N-acetylgalactosaminyltransferase 2 (GalNAc-T2), was initially discovered as a regulator of high-density lipoprotein metabolism. GalNAc-T2 is known to exert these effects through post-translational modification, i.e., O-linked glycosylation of secreted proteins with established roles in plasma lipid metabolism. It has recently become clear that loss of GALNT2 in rodents, cattle, nonhuman primates, and humans should be regarded as a novel congenital disorder of glycosylation that affects development and body weight. The role of GALNT2 in metabolic abnormalities other than plasma lipids, including insulin sensitivity and energy homeostasis, is poorly understood. METHODS: GWAS data from the UK Biobank was used to study variation in the GALNT2 locus beyond changes in high-density lipoprotein metabolism. Experimental data were obtained through studies in Galnt2(−/−) mice and wild-type littermates on both control and high-fat diet. RESULTS: First, we uncovered associations between GALNT2 gene variation, adiposity, and body mass index in humans. In mice, we identify the insulin receptor as a novel substrate of GalNAc-T2 and demonstrate that Galnt2(−/−) mice exhibit decreased adiposity, alterations in insulin signaling and a shift in energy substrate utilization in the inactive phase. CONCLUSIONS: This study identifies a novel role for GALNT2 in energy homeostasis, and our findings suggest that the local effects of GalNAc-T2 are mediated through posttranslational modification of the insulin receptor.
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spelling pubmed-90193982022-04-21 A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis Verzijl, Cristy R.C. Oldoni, Federico Loaiza, Natalia Wolters, Justina C. Rimbert, Antoine Tian, E. Yang, Weiming Struik, Dicky Smit, Marieke Kloosterhuis, Niels J. Fernandez, Amy J. Samara, Nadine L. Ten Hagen, Kelly G. Dalal, Kruti Chernish, Aliona McCluggage, Peggy Tabak, Lawrence A. Jonker, Johan W. Kuivenhoven, Jan Albert Mol Metab Original Article OBJECTIVE: GALNT2, encoding polypeptide N-acetylgalactosaminyltransferase 2 (GalNAc-T2), was initially discovered as a regulator of high-density lipoprotein metabolism. GalNAc-T2 is known to exert these effects through post-translational modification, i.e., O-linked glycosylation of secreted proteins with established roles in plasma lipid metabolism. It has recently become clear that loss of GALNT2 in rodents, cattle, nonhuman primates, and humans should be regarded as a novel congenital disorder of glycosylation that affects development and body weight. The role of GALNT2 in metabolic abnormalities other than plasma lipids, including insulin sensitivity and energy homeostasis, is poorly understood. METHODS: GWAS data from the UK Biobank was used to study variation in the GALNT2 locus beyond changes in high-density lipoprotein metabolism. Experimental data were obtained through studies in Galnt2(−/−) mice and wild-type littermates on both control and high-fat diet. RESULTS: First, we uncovered associations between GALNT2 gene variation, adiposity, and body mass index in humans. In mice, we identify the insulin receptor as a novel substrate of GalNAc-T2 and demonstrate that Galnt2(−/−) mice exhibit decreased adiposity, alterations in insulin signaling and a shift in energy substrate utilization in the inactive phase. CONCLUSIONS: This study identifies a novel role for GALNT2 in energy homeostasis, and our findings suggest that the local effects of GalNAc-T2 are mediated through posttranslational modification of the insulin receptor. Elsevier 2022-03-15 /pmc/articles/PMC9019398/ /pubmed/35304331 http://dx.doi.org/10.1016/j.molmet.2022.101472 Text en © 2022 The Author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Article
Verzijl, Cristy R.C.
Oldoni, Federico
Loaiza, Natalia
Wolters, Justina C.
Rimbert, Antoine
Tian, E.
Yang, Weiming
Struik, Dicky
Smit, Marieke
Kloosterhuis, Niels J.
Fernandez, Amy J.
Samara, Nadine L.
Ten Hagen, Kelly G.
Dalal, Kruti
Chernish, Aliona
McCluggage, Peggy
Tabak, Lawrence A.
Jonker, Johan W.
Kuivenhoven, Jan Albert
A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title_full A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title_fullStr A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title_full_unstemmed A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title_short A novel role for GalNAc-T2 dependent glycosylation in energy homeostasis
title_sort novel role for galnac-t2 dependent glycosylation in energy homeostasis
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9019398/
https://www.ncbi.nlm.nih.gov/pubmed/35304331
http://dx.doi.org/10.1016/j.molmet.2022.101472
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