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Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure

Mice that are deficient in superoxide dismutase 1 (Sod1), an antioxidative enzyme, are susceptible to developing liver steatosis. Peroxiredoxin 4 (Prdx4) catalyzes disulfide bond formation in proteins via the action of hydrogen peroxide and hence decreases oxidative stress and supports oxidative pro...

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Autores principales: Homma, Takujiro, Kurahashi, Toshihiro, Lee, Jaeyong, Nabeshima, Atsunori, Yamada, Sohsuke, Fujii, Junichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6040270/
https://www.ncbi.nlm.nih.gov/pubmed/30050648
http://dx.doi.org/10.1155/2018/2812904
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author Homma, Takujiro
Kurahashi, Toshihiro
Lee, Jaeyong
Nabeshima, Atsunori
Yamada, Sohsuke
Fujii, Junichi
author_facet Homma, Takujiro
Kurahashi, Toshihiro
Lee, Jaeyong
Nabeshima, Atsunori
Yamada, Sohsuke
Fujii, Junichi
author_sort Homma, Takujiro
collection PubMed
description Mice that are deficient in superoxide dismutase 1 (Sod1), an antioxidative enzyme, are susceptible to developing liver steatosis. Peroxiredoxin 4 (Prdx4) catalyzes disulfide bond formation in proteins via the action of hydrogen peroxide and hence decreases oxidative stress and supports oxidative protein folding for the secretion of lipoproteins. Because elevated reactive oxygen species induce endoplasmic reticulum stress, this negative chain reaction is likely involved in the development of nonalcoholic fatty liver diseases and more advanced steatohepatitis (NASH). In the current study, we generated Prdx4 and Sod1 double knockout (DKO; Prdx4(−/y)Sod1(−/−)) mice and examined whether the combined deletion of Prdx4 and Sod1 aggravated liver pathology compared to single knockout and wild-type mice. The secretion of triglyceride-rich lipoprotein was strikingly impaired in the DKO mice, leading to aggravated liver steatosis. Simultaneously, the activation of caspase-3 in the liver was observed. The hyperoxidation of Prdxs, a hallmark of oxidative stress, occurred in different isoforms that are uniquely associated with Sod1(−/−) and Prdx4(−/y) mice, and the effect was additive in DKO mouse livers. Because DKO mice spontaneously develop severe liver failure at a relatively young stage, they have the potential for use as a model for hepatic disorders and for testing other potential treatments.
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spelling pubmed-60402702018-07-26 Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure Homma, Takujiro Kurahashi, Toshihiro Lee, Jaeyong Nabeshima, Atsunori Yamada, Sohsuke Fujii, Junichi Oxid Med Cell Longev Research Article Mice that are deficient in superoxide dismutase 1 (Sod1), an antioxidative enzyme, are susceptible to developing liver steatosis. Peroxiredoxin 4 (Prdx4) catalyzes disulfide bond formation in proteins via the action of hydrogen peroxide and hence decreases oxidative stress and supports oxidative protein folding for the secretion of lipoproteins. Because elevated reactive oxygen species induce endoplasmic reticulum stress, this negative chain reaction is likely involved in the development of nonalcoholic fatty liver diseases and more advanced steatohepatitis (NASH). In the current study, we generated Prdx4 and Sod1 double knockout (DKO; Prdx4(−/y)Sod1(−/−)) mice and examined whether the combined deletion of Prdx4 and Sod1 aggravated liver pathology compared to single knockout and wild-type mice. The secretion of triglyceride-rich lipoprotein was strikingly impaired in the DKO mice, leading to aggravated liver steatosis. Simultaneously, the activation of caspase-3 in the liver was observed. The hyperoxidation of Prdxs, a hallmark of oxidative stress, occurred in different isoforms that are uniquely associated with Sod1(−/−) and Prdx4(−/y) mice, and the effect was additive in DKO mouse livers. Because DKO mice spontaneously develop severe liver failure at a relatively young stage, they have the potential for use as a model for hepatic disorders and for testing other potential treatments. Hindawi 2018-06-27 /pmc/articles/PMC6040270/ /pubmed/30050648 http://dx.doi.org/10.1155/2018/2812904 Text en Copyright © 2018 Takujiro Homma et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Homma, Takujiro
Kurahashi, Toshihiro
Lee, Jaeyong
Nabeshima, Atsunori
Yamada, Sohsuke
Fujii, Junichi
Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title_full Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title_fullStr Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title_full_unstemmed Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title_short Double Knockout of Peroxiredoxin 4 (Prdx4) and Superoxide Dismutase 1 (Sod1) in Mice Results in Severe Liver Failure
title_sort double knockout of peroxiredoxin 4 (prdx4) and superoxide dismutase 1 (sod1) in mice results in severe liver failure
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6040270/
https://www.ncbi.nlm.nih.gov/pubmed/30050648
http://dx.doi.org/10.1155/2018/2812904
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