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Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas

Multidrug resistance protein 4 (MRP4) is an energy-dependent membrane transporter responsible for cellular efflux of a broad range of xenobiotics and physiological substrates. In this trial, we aimed to investigate the coeffects of aging and MRP4 deficiency using gene expression microarray and morph...

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Autores principales: Kim, Kyung Woo, Kusuhara, Sentaro, Katsuyama-Yoshikawa, Atsuko, Nobuyoshi, Sho, Kitamura, Megumi, Mori, Sotaro, Sotani, Noriyuki, Ueda, Kaori, Matsumiya, Wataru, Miki, Akiko, Kurimoto, Takuji, Imai, Hisanori, Nakamura, Makoto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999859/
https://www.ncbi.nlm.nih.gov/pubmed/33804096
http://dx.doi.org/10.3390/antiox10030455
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author Kim, Kyung Woo
Kusuhara, Sentaro
Katsuyama-Yoshikawa, Atsuko
Nobuyoshi, Sho
Kitamura, Megumi
Mori, Sotaro
Sotani, Noriyuki
Ueda, Kaori
Matsumiya, Wataru
Miki, Akiko
Kurimoto, Takuji
Imai, Hisanori
Nakamura, Makoto
author_facet Kim, Kyung Woo
Kusuhara, Sentaro
Katsuyama-Yoshikawa, Atsuko
Nobuyoshi, Sho
Kitamura, Megumi
Mori, Sotaro
Sotani, Noriyuki
Ueda, Kaori
Matsumiya, Wataru
Miki, Akiko
Kurimoto, Takuji
Imai, Hisanori
Nakamura, Makoto
author_sort Kim, Kyung Woo
collection PubMed
description Multidrug resistance protein 4 (MRP4) is an energy-dependent membrane transporter responsible for cellular efflux of a broad range of xenobiotics and physiological substrates. In this trial, we aimed to investigate the coeffects of aging and MRP4 deficiency using gene expression microarray and morphological and electrophysiological analyses of mouse retinas. Mrp4-knockout (null) mice and wild-type (WT) mice were reared in the same conditions to 8–12 weeks (young) or 45–55 weeks (aged). Microarray analysis identified 186 differently expressed genes from the retinas of aged Mrp4-null mice as compared to aged WT mice, and subsequent gene ontology and KEGG pathway analyses showed that differently expressed genes were related to lens, eye development, vision and transcellular barrier functions that are involved in metabolic pathways or viral infection pathways. No significant change in thickness was observed for each retinal layer among young/aged WT mice and young/aged Mrp4-null mice. Moreover, immunohistochemical analyses of retinal cell type did not exhibit an overt change in the cellular morphology or distribution among the four age/genotype groups, and the electroretinogram responses showed no significant differences in the amplitude or the latency between aged WT mice and aged Mrp4-null mice. Aging would be an insufficient stress to cause some damage to the retina in the presence of MRP4 deficiency.
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spelling pubmed-79998592021-03-28 Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas Kim, Kyung Woo Kusuhara, Sentaro Katsuyama-Yoshikawa, Atsuko Nobuyoshi, Sho Kitamura, Megumi Mori, Sotaro Sotani, Noriyuki Ueda, Kaori Matsumiya, Wataru Miki, Akiko Kurimoto, Takuji Imai, Hisanori Nakamura, Makoto Antioxidants (Basel) Article Multidrug resistance protein 4 (MRP4) is an energy-dependent membrane transporter responsible for cellular efflux of a broad range of xenobiotics and physiological substrates. In this trial, we aimed to investigate the coeffects of aging and MRP4 deficiency using gene expression microarray and morphological and electrophysiological analyses of mouse retinas. Mrp4-knockout (null) mice and wild-type (WT) mice were reared in the same conditions to 8–12 weeks (young) or 45–55 weeks (aged). Microarray analysis identified 186 differently expressed genes from the retinas of aged Mrp4-null mice as compared to aged WT mice, and subsequent gene ontology and KEGG pathway analyses showed that differently expressed genes were related to lens, eye development, vision and transcellular barrier functions that are involved in metabolic pathways or viral infection pathways. No significant change in thickness was observed for each retinal layer among young/aged WT mice and young/aged Mrp4-null mice. Moreover, immunohistochemical analyses of retinal cell type did not exhibit an overt change in the cellular morphology or distribution among the four age/genotype groups, and the electroretinogram responses showed no significant differences in the amplitude or the latency between aged WT mice and aged Mrp4-null mice. Aging would be an insufficient stress to cause some damage to the retina in the presence of MRP4 deficiency. MDPI 2021-03-15 /pmc/articles/PMC7999859/ /pubmed/33804096 http://dx.doi.org/10.3390/antiox10030455 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/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/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Kim, Kyung Woo
Kusuhara, Sentaro
Katsuyama-Yoshikawa, Atsuko
Nobuyoshi, Sho
Kitamura, Megumi
Mori, Sotaro
Sotani, Noriyuki
Ueda, Kaori
Matsumiya, Wataru
Miki, Akiko
Kurimoto, Takuji
Imai, Hisanori
Nakamura, Makoto
Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title_full Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title_fullStr Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title_full_unstemmed Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title_short Changes in Gene Expression Profiling and Phenotype in Aged Multidrug Resistance Protein 4-Deficient Mouse Retinas
title_sort changes in gene expression profiling and phenotype in aged multidrug resistance protein 4-deficient mouse retinas
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7999859/
https://www.ncbi.nlm.nih.gov/pubmed/33804096
http://dx.doi.org/10.3390/antiox10030455
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