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FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function

Flavoprotein oxidoreductases are members of a large protein family of specialized dehydrogenases, which include type II NADH dehydrogenase, pyridine nucleotide-disulphide oxidoreductases, ferredoxin-NAD+ reductases, NADH oxidases, and NADH peroxidases, playing a crucial role in the metabolism of sev...

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Autores principales: Trisolini, Lucia, Gambacorta, Nicola, Gorgoglione, Ruggiero, Montaruli, Michele, Laera, Luna, Colella, Francesco, Volpicella, Mariateresa, De Grassi, Anna, Pierri, Ciro Leonardo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6947548/
https://www.ncbi.nlm.nih.gov/pubmed/31810296
http://dx.doi.org/10.3390/jcm8122117
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author Trisolini, Lucia
Gambacorta, Nicola
Gorgoglione, Ruggiero
Montaruli, Michele
Laera, Luna
Colella, Francesco
Volpicella, Mariateresa
De Grassi, Anna
Pierri, Ciro Leonardo
author_facet Trisolini, Lucia
Gambacorta, Nicola
Gorgoglione, Ruggiero
Montaruli, Michele
Laera, Luna
Colella, Francesco
Volpicella, Mariateresa
De Grassi, Anna
Pierri, Ciro Leonardo
author_sort Trisolini, Lucia
collection PubMed
description Flavoprotein oxidoreductases are members of a large protein family of specialized dehydrogenases, which include type II NADH dehydrogenase, pyridine nucleotide-disulphide oxidoreductases, ferredoxin-NAD+ reductases, NADH oxidases, and NADH peroxidases, playing a crucial role in the metabolism of several prokaryotes and eukaryotes. Although several studies have been performed on single members or protein subgroups of flavoprotein oxidoreductases, a comprehensive analysis on structure–function relationships among the different members and subgroups of this great dehydrogenase family is still missing. Here, we present a structural comparative analysis showing that the investigated flavoprotein oxidoreductases have a highly similar overall structure, although the investigated dehydrogenases are quite different in functional annotations and global amino acid composition. The different functional annotation is ascribed to their participation in species-specific metabolic pathways based on the same biochemical reaction, i.e., the oxidation of specific cofactors, like NADH and FADH(2). Notably, the performed comparative analysis sheds light on conserved sequence features that reflect very similar oxidation mechanisms, conserved among flavoprotein oxidoreductases belonging to phylogenetically distant species, as the bacterial type II NADH dehydrogenases and the mammalian apoptosis-inducing factor protein, until now retained as unique protein entities in Bacteria/Fungi or Animals, respectively. Furthermore, the presented computational analyses will allow consideration of FAD/NADH oxidoreductases as a possible target of new small molecules to be used as modulators of mitochondrial respiration for patients affected by rare diseases or cancer showing mitochondrial dysfunction, or antibiotics for treating bacterial/fungal/protista infections.
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spelling pubmed-69475482020-01-13 FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function Trisolini, Lucia Gambacorta, Nicola Gorgoglione, Ruggiero Montaruli, Michele Laera, Luna Colella, Francesco Volpicella, Mariateresa De Grassi, Anna Pierri, Ciro Leonardo J Clin Med Article Flavoprotein oxidoreductases are members of a large protein family of specialized dehydrogenases, which include type II NADH dehydrogenase, pyridine nucleotide-disulphide oxidoreductases, ferredoxin-NAD+ reductases, NADH oxidases, and NADH peroxidases, playing a crucial role in the metabolism of several prokaryotes and eukaryotes. Although several studies have been performed on single members or protein subgroups of flavoprotein oxidoreductases, a comprehensive analysis on structure–function relationships among the different members and subgroups of this great dehydrogenase family is still missing. Here, we present a structural comparative analysis showing that the investigated flavoprotein oxidoreductases have a highly similar overall structure, although the investigated dehydrogenases are quite different in functional annotations and global amino acid composition. The different functional annotation is ascribed to their participation in species-specific metabolic pathways based on the same biochemical reaction, i.e., the oxidation of specific cofactors, like NADH and FADH(2). Notably, the performed comparative analysis sheds light on conserved sequence features that reflect very similar oxidation mechanisms, conserved among flavoprotein oxidoreductases belonging to phylogenetically distant species, as the bacterial type II NADH dehydrogenases and the mammalian apoptosis-inducing factor protein, until now retained as unique protein entities in Bacteria/Fungi or Animals, respectively. Furthermore, the presented computational analyses will allow consideration of FAD/NADH oxidoreductases as a possible target of new small molecules to be used as modulators of mitochondrial respiration for patients affected by rare diseases or cancer showing mitochondrial dysfunction, or antibiotics for treating bacterial/fungal/protista infections. MDPI 2019-12-02 /pmc/articles/PMC6947548/ /pubmed/31810296 http://dx.doi.org/10.3390/jcm8122117 Text en © 2019 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
Trisolini, Lucia
Gambacorta, Nicola
Gorgoglione, Ruggiero
Montaruli, Michele
Laera, Luna
Colella, Francesco
Volpicella, Mariateresa
De Grassi, Anna
Pierri, Ciro Leonardo
FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title_full FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title_fullStr FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title_full_unstemmed FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title_short FAD/NADH Dependent Oxidoreductases: From Different Amino Acid Sequences to Similar Protein Shapes for Playing an Ancient Function
title_sort fad/nadh dependent oxidoreductases: from different amino acid sequences to similar protein shapes for playing an ancient function
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6947548/
https://www.ncbi.nlm.nih.gov/pubmed/31810296
http://dx.doi.org/10.3390/jcm8122117
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