Dynamic control of electron transfers in diflavin reductases.

Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced pyridine nucleotides to a variety of one electron acceptors. The primary sequence of diflavin reductases shows a conserved domain organization harboring two catalytic domains bound to the FAD and FMN f...

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Main Authors: Aigrain, L, Fatemi, F, Frances, O, Lescop, E, Truan, G
Format: Journal article
Language:English
Published: 2012
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author Aigrain, L
Fatemi, F
Frances, O
Lescop, E
Truan, G
author_facet Aigrain, L
Fatemi, F
Frances, O
Lescop, E
Truan, G
author_sort Aigrain, L
collection OXFORD
description Diflavin reductases are essential proteins capable of splitting the two-electron flux from reduced pyridine nucleotides to a variety of one electron acceptors. The primary sequence of diflavin reductases shows a conserved domain organization harboring two catalytic domains bound to the FAD and FMN flavins sandwiched by one or several non-catalytic domains. The catalytic domains are analogous to existing globular proteins: the FMN domain is analogous to flavodoxins while the FAD domain resembles ferredoxin reductases. The first structural determination of one member of the diflavin reductases family raised some questions about the architecture of the enzyme during catalysis: both FMN and FAD were in perfect position for interflavin transfers but the steric hindrance of the FAD domain rapidly prompted more complex hypotheses on the possible mechanisms for the electron transfer from FMN to external acceptors. Hypotheses of domain reorganization during catalysis in the context of the different members of this family were given by many groups during the past twenty years. This review will address the recent advances in various structural approaches that have highlighted specific dynamic features of diflavin reductases.
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spelling oxford-uuid:5554ea12-50a4-450e-9d20-1c2e5f3d134f2022-03-26T16:43:22ZDynamic control of electron transfers in diflavin reductases.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:5554ea12-50a4-450e-9d20-1c2e5f3d134fEnglishSymplectic Elements at Oxford2012Aigrain, LFatemi, FFrances, OLescop, ETruan, GDiflavin reductases are essential proteins capable of splitting the two-electron flux from reduced pyridine nucleotides to a variety of one electron acceptors. The primary sequence of diflavin reductases shows a conserved domain organization harboring two catalytic domains bound to the FAD and FMN flavins sandwiched by one or several non-catalytic domains. The catalytic domains are analogous to existing globular proteins: the FMN domain is analogous to flavodoxins while the FAD domain resembles ferredoxin reductases. The first structural determination of one member of the diflavin reductases family raised some questions about the architecture of the enzyme during catalysis: both FMN and FAD were in perfect position for interflavin transfers but the steric hindrance of the FAD domain rapidly prompted more complex hypotheses on the possible mechanisms for the electron transfer from FMN to external acceptors. Hypotheses of domain reorganization during catalysis in the context of the different members of this family were given by many groups during the past twenty years. This review will address the recent advances in various structural approaches that have highlighted specific dynamic features of diflavin reductases.
spellingShingle Aigrain, L
Fatemi, F
Frances, O
Lescop, E
Truan, G
Dynamic control of electron transfers in diflavin reductases.
title Dynamic control of electron transfers in diflavin reductases.
title_full Dynamic control of electron transfers in diflavin reductases.
title_fullStr Dynamic control of electron transfers in diflavin reductases.
title_full_unstemmed Dynamic control of electron transfers in diflavin reductases.
title_short Dynamic control of electron transfers in diflavin reductases.
title_sort dynamic control of electron transfers in diflavin reductases
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AT lescope dynamiccontrolofelectrontransfersindiflavinreductases
AT truang dynamiccontrolofelectrontransfersindiflavinreductases