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Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype

SUGCT (C7orf10) is a mitochondrial enzyme that synthesizes glutaryl-CoA from glutarate in tryptophan and lysine catabolism, but it has not been studied in vivo. Although mutations in Sugct lead to Glutaric Aciduria Type 3 disease in humans, patients remain largely asymptomatic despite high levels of...

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Autores principales: Niska-Blakie, Joanna, Gopinathan, Lakshmi, Low, Kia Ngee, Kien, Yang Lay, Goh, Christine M. F., Caldez, Matias J., Pfeiffenberger, Elisabeth, Jones, Oliver S., Ong, Chee Bing, Kurochkin, Igor V., Coppola, Vincenzo, Tessarollo, Lino, Choi, Hyungwon, Kanagasundaram, Yoganathan, Eisenhaber, Frank, Maurer-Stroh, Sebastian, Kaldis, Philipp
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7426296/
https://www.ncbi.nlm.nih.gov/pubmed/31722069
http://dx.doi.org/10.1007/s00018-019-03359-z
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author Niska-Blakie, Joanna
Gopinathan, Lakshmi
Low, Kia Ngee
Kien, Yang Lay
Goh, Christine M. F.
Caldez, Matias J.
Pfeiffenberger, Elisabeth
Jones, Oliver S.
Ong, Chee Bing
Kurochkin, Igor V.
Coppola, Vincenzo
Tessarollo, Lino
Choi, Hyungwon
Kanagasundaram, Yoganathan
Eisenhaber, Frank
Maurer-Stroh, Sebastian
Kaldis, Philipp
author_facet Niska-Blakie, Joanna
Gopinathan, Lakshmi
Low, Kia Ngee
Kien, Yang Lay
Goh, Christine M. F.
Caldez, Matias J.
Pfeiffenberger, Elisabeth
Jones, Oliver S.
Ong, Chee Bing
Kurochkin, Igor V.
Coppola, Vincenzo
Tessarollo, Lino
Choi, Hyungwon
Kanagasundaram, Yoganathan
Eisenhaber, Frank
Maurer-Stroh, Sebastian
Kaldis, Philipp
author_sort Niska-Blakie, Joanna
collection PubMed
description SUGCT (C7orf10) is a mitochondrial enzyme that synthesizes glutaryl-CoA from glutarate in tryptophan and lysine catabolism, but it has not been studied in vivo. Although mutations in Sugct lead to Glutaric Aciduria Type 3 disease in humans, patients remain largely asymptomatic despite high levels of glutarate in the urine. To study the disease mechanism, we generated SugctKO mice and uncovered imbalanced lipid and acylcarnitine metabolism in kidney in addition to changes in the gut microbiome. After SugctKO mice were treated with antibiotics, metabolites were comparable to WT, indicating that the microbiome affects metabolism in SugctKO mice. SUGCT loss of function contributes to gut microbiota dysbiosis, leading to age-dependent pathological changes in kidney, liver, and adipose tissue. This is associated with an obesity-related phenotype that is accompanied by lipid accumulation in kidney and liver, as well as “crown-like” structures in adipocytes. Furthermore, we show that the SugctKO kidney pathology is accelerated and exacerbated by a high-lysine diet. Our study highlights the importance of non-essential genes with no readily detectable early phenotype, but with substantial contributions to the development of age-related pathologies, which result from an interplay between genetic background, microbiome, and diet in the health of mammals. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00018-019-03359-z) contains supplementary material, which is available to authorized users.
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spelling pubmed-74262962020-08-19 Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype Niska-Blakie, Joanna Gopinathan, Lakshmi Low, Kia Ngee Kien, Yang Lay Goh, Christine M. F. Caldez, Matias J. Pfeiffenberger, Elisabeth Jones, Oliver S. Ong, Chee Bing Kurochkin, Igor V. Coppola, Vincenzo Tessarollo, Lino Choi, Hyungwon Kanagasundaram, Yoganathan Eisenhaber, Frank Maurer-Stroh, Sebastian Kaldis, Philipp Cell Mol Life Sci Original Article SUGCT (C7orf10) is a mitochondrial enzyme that synthesizes glutaryl-CoA from glutarate in tryptophan and lysine catabolism, but it has not been studied in vivo. Although mutations in Sugct lead to Glutaric Aciduria Type 3 disease in humans, patients remain largely asymptomatic despite high levels of glutarate in the urine. To study the disease mechanism, we generated SugctKO mice and uncovered imbalanced lipid and acylcarnitine metabolism in kidney in addition to changes in the gut microbiome. After SugctKO mice were treated with antibiotics, metabolites were comparable to WT, indicating that the microbiome affects metabolism in SugctKO mice. SUGCT loss of function contributes to gut microbiota dysbiosis, leading to age-dependent pathological changes in kidney, liver, and adipose tissue. This is associated with an obesity-related phenotype that is accompanied by lipid accumulation in kidney and liver, as well as “crown-like” structures in adipocytes. Furthermore, we show that the SugctKO kidney pathology is accelerated and exacerbated by a high-lysine diet. Our study highlights the importance of non-essential genes with no readily detectable early phenotype, but with substantial contributions to the development of age-related pathologies, which result from an interplay between genetic background, microbiome, and diet in the health of mammals. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1007/s00018-019-03359-z) contains supplementary material, which is available to authorized users. Springer International Publishing 2019-11-13 2020 /pmc/articles/PMC7426296/ /pubmed/31722069 http://dx.doi.org/10.1007/s00018-019-03359-z Text en © The Author(s) 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.
spellingShingle Original Article
Niska-Blakie, Joanna
Gopinathan, Lakshmi
Low, Kia Ngee
Kien, Yang Lay
Goh, Christine M. F.
Caldez, Matias J.
Pfeiffenberger, Elisabeth
Jones, Oliver S.
Ong, Chee Bing
Kurochkin, Igor V.
Coppola, Vincenzo
Tessarollo, Lino
Choi, Hyungwon
Kanagasundaram, Yoganathan
Eisenhaber, Frank
Maurer-Stroh, Sebastian
Kaldis, Philipp
Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title_full Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title_fullStr Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title_full_unstemmed Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title_short Knockout of the non-essential gene SUGCT creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
title_sort knockout of the non-essential gene sugct creates diet-linked, age-related microbiome disbalance with a diabetes-like metabolic syndrome phenotype
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7426296/
https://www.ncbi.nlm.nih.gov/pubmed/31722069
http://dx.doi.org/10.1007/s00018-019-03359-z
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