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Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine

The process of obtaining ascorbic acid (AA) via intestinal absorption and blood circulation is carrier-mediated utilizing the AA transporters SVCT1 and SVCT2, which are expressed in the intestine and brain (SVCT2 in abundance). AA concentration is decreased in Alzheimer’s disease (AD), but informati...

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Autores principales: Teafatiller, Trevor, Heskett, Christopher W., Agrawal, Anshu, Marchant, Jonathan S., Baulch, Janet E., Acharya, Munjal M., Subramanian, Veedamali S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918291/
https://www.ncbi.nlm.nih.gov/pubmed/33672967
http://dx.doi.org/10.3390/nu13020617
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author Teafatiller, Trevor
Heskett, Christopher W.
Agrawal, Anshu
Marchant, Jonathan S.
Baulch, Janet E.
Acharya, Munjal M.
Subramanian, Veedamali S.
author_facet Teafatiller, Trevor
Heskett, Christopher W.
Agrawal, Anshu
Marchant, Jonathan S.
Baulch, Janet E.
Acharya, Munjal M.
Subramanian, Veedamali S.
author_sort Teafatiller, Trevor
collection PubMed
description The process of obtaining ascorbic acid (AA) via intestinal absorption and blood circulation is carrier-mediated utilizing the AA transporters SVCT1 and SVCT2, which are expressed in the intestine and brain (SVCT2 in abundance). AA concentration is decreased in Alzheimer’s disease (AD), but information regarding the status of intestinal AA uptake in the AD is still lacking. We aimed here to understand how AA homeostasis is modulated in a transgenic mouse model (5xFAD) of AD. AA levels in serum from 5xFAD mice were markedly lower than controls. Expression of oxidative stress response genes (glutathione peroxidase 1 (GPX1) and superoxide dismutase 1 (SOD1)) were significantly increased in AD mice jejunum, and this increase was mitigated by AA supplementation. Uptake of AA in the jejunum was upregulated. This increased AA transport was caused by a marked increase in SVCT1 and SVCT2 protein, mRNA, and heterogeneous nuclear RNA (hnRNA) expression. A significant increase in the expression of HNF1α and specific protein 1 (Sp1), which drive SLC23A1 and SLC23A2 promoter activity, respectively, was observed. Expression of hSVCT interacting proteins GRHPR and CLSTN3 were also increased. SVCT2 protein and mRNA expression in the hippocampus of 5xFAD mice was not altered. Together, these investigations reveal adaptive up-regulation of intestinal AA uptake in the 5xFAD mouse model.
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spelling pubmed-79182912021-03-02 Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine Teafatiller, Trevor Heskett, Christopher W. Agrawal, Anshu Marchant, Jonathan S. Baulch, Janet E. Acharya, Munjal M. Subramanian, Veedamali S. Nutrients Article The process of obtaining ascorbic acid (AA) via intestinal absorption and blood circulation is carrier-mediated utilizing the AA transporters SVCT1 and SVCT2, which are expressed in the intestine and brain (SVCT2 in abundance). AA concentration is decreased in Alzheimer’s disease (AD), but information regarding the status of intestinal AA uptake in the AD is still lacking. We aimed here to understand how AA homeostasis is modulated in a transgenic mouse model (5xFAD) of AD. AA levels in serum from 5xFAD mice were markedly lower than controls. Expression of oxidative stress response genes (glutathione peroxidase 1 (GPX1) and superoxide dismutase 1 (SOD1)) were significantly increased in AD mice jejunum, and this increase was mitigated by AA supplementation. Uptake of AA in the jejunum was upregulated. This increased AA transport was caused by a marked increase in SVCT1 and SVCT2 protein, mRNA, and heterogeneous nuclear RNA (hnRNA) expression. A significant increase in the expression of HNF1α and specific protein 1 (Sp1), which drive SLC23A1 and SLC23A2 promoter activity, respectively, was observed. Expression of hSVCT interacting proteins GRHPR and CLSTN3 were also increased. SVCT2 protein and mRNA expression in the hippocampus of 5xFAD mice was not altered. Together, these investigations reveal adaptive up-regulation of intestinal AA uptake in the 5xFAD mouse model. MDPI 2021-02-14 /pmc/articles/PMC7918291/ /pubmed/33672967 http://dx.doi.org/10.3390/nu13020617 Text en © 2021 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
Teafatiller, Trevor
Heskett, Christopher W.
Agrawal, Anshu
Marchant, Jonathan S.
Baulch, Janet E.
Acharya, Munjal M.
Subramanian, Veedamali S.
Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title_full Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title_fullStr Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title_full_unstemmed Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title_short Upregulation of Vitamin C Transporter Functional Expression in 5xFAD Mouse Intestine
title_sort upregulation of vitamin c transporter functional expression in 5xfad mouse intestine
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7918291/
https://www.ncbi.nlm.nih.gov/pubmed/33672967
http://dx.doi.org/10.3390/nu13020617
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