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The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice

The mitochondrial amidoxime reducing component mARC is the fourth mammalian molybdenum enzyme. The protein is capable of reducing N-oxygenated structures, but requires cytochrome b5 and cytochrome b5 reductase for electron transfer to catalyze such reactions. It is well accepted that the enzyme is i...

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Autores principales: Jakobs, Heyka H., Mikula, Michal, Havemeyer, Antje, Strzalkowska, Adriana, Borowa-Chmielak, Monika, Dzwonek, Artur, Gajewska, Marta, Hennig, Ewa E., Ostrowski, Jerzy, Clement, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4140751/
https://www.ncbi.nlm.nih.gov/pubmed/25144769
http://dx.doi.org/10.1371/journal.pone.0105371
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author Jakobs, Heyka H.
Mikula, Michal
Havemeyer, Antje
Strzalkowska, Adriana
Borowa-Chmielak, Monika
Dzwonek, Artur
Gajewska, Marta
Hennig, Ewa E.
Ostrowski, Jerzy
Clement, Bernd
author_facet Jakobs, Heyka H.
Mikula, Michal
Havemeyer, Antje
Strzalkowska, Adriana
Borowa-Chmielak, Monika
Dzwonek, Artur
Gajewska, Marta
Hennig, Ewa E.
Ostrowski, Jerzy
Clement, Bernd
author_sort Jakobs, Heyka H.
collection PubMed
description The mitochondrial amidoxime reducing component mARC is the fourth mammalian molybdenum enzyme. The protein is capable of reducing N-oxygenated structures, but requires cytochrome b5 and cytochrome b5 reductase for electron transfer to catalyze such reactions. It is well accepted that the enzyme is involved in N-reductive drug metabolism such as the activation of amidoxime prodrugs. However, the endogenous function of the protein is not fully understood. Among other functions, an involvement in lipogenesis is discussed. To study the potential involvement of the protein in energy metabolism, we tested whether the mARC protein and its partners are regulated due to fasting and high fat diet in mice. We used qRT-PCR for expression studies, Western Blot analysis to study protein levels and an N-reductive biotransformation assay to gain activity data. Indeed all proteins of the N-reductive system are regulated by fasting and its activity decreases. To study the potential impact of these changes on prodrug activation in vivo, another mice experiment was conducted. Model compound benzamidoxime was injected to mice that underwent fasting and the resulting metabolite of the N-reductive reaction, benzamidine, was determined. Albeit altered in vitro activity, no changes in the metabolite concentration in vivo were detectable and we can dispel concerns that fasting alters prodrug activation in animal models. With respect to high fat diet, changes in the mARC proteins occur that result in increased N-reductive activity. With this study we provide further evidence that the endogenous function of the mARC protein is linked with lipid metabolism.
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spelling pubmed-41407512014-08-25 The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice Jakobs, Heyka H. Mikula, Michal Havemeyer, Antje Strzalkowska, Adriana Borowa-Chmielak, Monika Dzwonek, Artur Gajewska, Marta Hennig, Ewa E. Ostrowski, Jerzy Clement, Bernd PLoS One Research Article The mitochondrial amidoxime reducing component mARC is the fourth mammalian molybdenum enzyme. The protein is capable of reducing N-oxygenated structures, but requires cytochrome b5 and cytochrome b5 reductase for electron transfer to catalyze such reactions. It is well accepted that the enzyme is involved in N-reductive drug metabolism such as the activation of amidoxime prodrugs. However, the endogenous function of the protein is not fully understood. Among other functions, an involvement in lipogenesis is discussed. To study the potential involvement of the protein in energy metabolism, we tested whether the mARC protein and its partners are regulated due to fasting and high fat diet in mice. We used qRT-PCR for expression studies, Western Blot analysis to study protein levels and an N-reductive biotransformation assay to gain activity data. Indeed all proteins of the N-reductive system are regulated by fasting and its activity decreases. To study the potential impact of these changes on prodrug activation in vivo, another mice experiment was conducted. Model compound benzamidoxime was injected to mice that underwent fasting and the resulting metabolite of the N-reductive reaction, benzamidine, was determined. Albeit altered in vitro activity, no changes in the metabolite concentration in vivo were detectable and we can dispel concerns that fasting alters prodrug activation in animal models. With respect to high fat diet, changes in the mARC proteins occur that result in increased N-reductive activity. With this study we provide further evidence that the endogenous function of the mARC protein is linked with lipid metabolism. Public Library of Science 2014-08-21 /pmc/articles/PMC4140751/ /pubmed/25144769 http://dx.doi.org/10.1371/journal.pone.0105371 Text en © 2014 Jakobs et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Jakobs, Heyka H.
Mikula, Michal
Havemeyer, Antje
Strzalkowska, Adriana
Borowa-Chmielak, Monika
Dzwonek, Artur
Gajewska, Marta
Hennig, Ewa E.
Ostrowski, Jerzy
Clement, Bernd
The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title_full The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title_fullStr The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title_full_unstemmed The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title_short The N-Reductive System Composed of Mitochondrial Amidoxime Reducing Component (mARC), Cytochrome b5 (CYB5B) and Cytochrome b5 Reductase (CYB5R) Is Regulated by Fasting and High Fat Diet in Mice
title_sort n-reductive system composed of mitochondrial amidoxime reducing component (marc), cytochrome b5 (cyb5b) and cytochrome b5 reductase (cyb5r) is regulated by fasting and high fat diet in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4140751/
https://www.ncbi.nlm.nih.gov/pubmed/25144769
http://dx.doi.org/10.1371/journal.pone.0105371
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