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Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency

Citrin is a liver-specific mitochondrial aspartate–glutamate carrier encoded by SLC25A13. Citrin deficiency caused by SLC25A13 mutation results in carbohydrate toxicity, citrullinemia type II, and fatty liver diseases, the mechanisms of some of which remain unknown. Citrin shows a functional homolog...

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Autores principales: Chalermwat, Chalongchai, Thosapornvichai, Thitipa, Jensen, Laran T., Wattanasirichaigoon, Duangrurdee
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7151034/
https://www.ncbi.nlm.nih.gov/pubmed/31936501
http://dx.doi.org/10.3390/diseases8010002
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author Chalermwat, Chalongchai
Thosapornvichai, Thitipa
Jensen, Laran T.
Wattanasirichaigoon, Duangrurdee
author_facet Chalermwat, Chalongchai
Thosapornvichai, Thitipa
Jensen, Laran T.
Wattanasirichaigoon, Duangrurdee
author_sort Chalermwat, Chalongchai
collection PubMed
description Citrin is a liver-specific mitochondrial aspartate–glutamate carrier encoded by SLC25A13. Citrin deficiency caused by SLC25A13 mutation results in carbohydrate toxicity, citrullinemia type II, and fatty liver diseases, the mechanisms of some of which remain unknown. Citrin shows a functional homolog in yeast aspartate-glutamate carrier (Agc1p) and agc1Δ yeasts are used as a model organism of citrin deficiency. Here, we found that agc1Δ yeasts decreased fat utilization, impaired NADH balance in peroxisomes, and decreased chronological lifespan. The activation of GPD1-mediated NAD(+) regeneration in peroxisomes by GPD1 over-expression or activation of the malate–oxaloacetate NADH peroxisomal shuttle, by increasing flux in this NADH shuttle and over-expression of MDH3, resulted in lifespan extension of agc1Δ yeasts. In addition, over-expression of PEX34 restored longevity of agc1Δ yeasts as well as wild-type cells. The effect of PEX34-mediated longevity required the presence of the GPD1-mediated NADH peroxisomal shuttle, which was independent of the presence of the peroxisomal malate–oxaloacetate NADH shuttle and PEX34-induced peroxisome proliferation. These data confirm that impaired NAD(+) regeneration in peroxisomes is a key defect in the yeast model of citrin deficiency, and enhancing peroxisome function or inducing NAD(+) regeneration in peroxisomes is suggested for further study in patients’ hepatocytes.
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spelling pubmed-71510342020-04-20 Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency Chalermwat, Chalongchai Thosapornvichai, Thitipa Jensen, Laran T. Wattanasirichaigoon, Duangrurdee Diseases Article Citrin is a liver-specific mitochondrial aspartate–glutamate carrier encoded by SLC25A13. Citrin deficiency caused by SLC25A13 mutation results in carbohydrate toxicity, citrullinemia type II, and fatty liver diseases, the mechanisms of some of which remain unknown. Citrin shows a functional homolog in yeast aspartate-glutamate carrier (Agc1p) and agc1Δ yeasts are used as a model organism of citrin deficiency. Here, we found that agc1Δ yeasts decreased fat utilization, impaired NADH balance in peroxisomes, and decreased chronological lifespan. The activation of GPD1-mediated NAD(+) regeneration in peroxisomes by GPD1 over-expression or activation of the malate–oxaloacetate NADH peroxisomal shuttle, by increasing flux in this NADH shuttle and over-expression of MDH3, resulted in lifespan extension of agc1Δ yeasts. In addition, over-expression of PEX34 restored longevity of agc1Δ yeasts as well as wild-type cells. The effect of PEX34-mediated longevity required the presence of the GPD1-mediated NADH peroxisomal shuttle, which was independent of the presence of the peroxisomal malate–oxaloacetate NADH shuttle and PEX34-induced peroxisome proliferation. These data confirm that impaired NAD(+) regeneration in peroxisomes is a key defect in the yeast model of citrin deficiency, and enhancing peroxisome function or inducing NAD(+) regeneration in peroxisomes is suggested for further study in patients’ hepatocytes. MDPI 2020-01-09 /pmc/articles/PMC7151034/ /pubmed/31936501 http://dx.doi.org/10.3390/diseases8010002 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Chalermwat, Chalongchai
Thosapornvichai, Thitipa
Jensen, Laran T.
Wattanasirichaigoon, Duangrurdee
Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title_full Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title_fullStr Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title_full_unstemmed Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title_short Genetic Analysis of Peroxisomal Genes Required for Longevity in a Yeast Model of Citrin Deficiency
title_sort genetic analysis of peroxisomal genes required for longevity in a yeast model of citrin deficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7151034/
https://www.ncbi.nlm.nih.gov/pubmed/31936501
http://dx.doi.org/10.3390/diseases8010002
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