Cluster and fold stability of E. coli ISC-type ferredoxin.

Iron-sulfur clusters are essential protein prosthetic groups that provide their redox potential to several different metabolic pathways. Formation of iron-sulfur clusters is assisted by a specialised machine that comprises, among other proteins, a ferredoxin. As a first step to elucidate the precise...

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Main Authors: Robert Yan, Salvatore Adinolfi, Clara Iannuzzi, Geoff Kelly, Alain Oregioni, Stephen Martin, Annalisa Pastore
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3827102?pdf=render
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spelling doaj-657e9f1f40804b90b579f6cd42fa03512020-11-25T02:12:17ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01811e7894810.1371/journal.pone.0078948Cluster and fold stability of E. coli ISC-type ferredoxin.Robert YanSalvatore AdinolfiClara IannuzziGeoff KellyAlain OregioniStephen MartinAnnalisa PastoreIron-sulfur clusters are essential protein prosthetic groups that provide their redox potential to several different metabolic pathways. Formation of iron-sulfur clusters is assisted by a specialised machine that comprises, among other proteins, a ferredoxin. As a first step to elucidate the precise role of this protein in cluster assembly, we have studied the factors governing the stability and the dynamic properties of E. coli ferredoxin using different spectroscopic techniques. The cluster-loaded protein is monomeric and well structured with a flexible C-terminus but is highly oxygen sensitive so that it readily loses the cluster leading to an irreversible unfolding under aerobic conditions. This process is slowed down by reducing conditions and high ionic strengths. NMR relaxation experiments on the cluster-loaded protein also show that, once the cluster is in place, the protein forms a globular and relatively rigid domain. These data indicate that the presence of the iron-sulfur cluster is the switch between a functional and a non-functional state.http://europepmc.org/articles/PMC3827102?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Robert Yan
Salvatore Adinolfi
Clara Iannuzzi
Geoff Kelly
Alain Oregioni
Stephen Martin
Annalisa Pastore
spellingShingle Robert Yan
Salvatore Adinolfi
Clara Iannuzzi
Geoff Kelly
Alain Oregioni
Stephen Martin
Annalisa Pastore
Cluster and fold stability of E. coli ISC-type ferredoxin.
PLoS ONE
author_facet Robert Yan
Salvatore Adinolfi
Clara Iannuzzi
Geoff Kelly
Alain Oregioni
Stephen Martin
Annalisa Pastore
author_sort Robert Yan
title Cluster and fold stability of E. coli ISC-type ferredoxin.
title_short Cluster and fold stability of E. coli ISC-type ferredoxin.
title_full Cluster and fold stability of E. coli ISC-type ferredoxin.
title_fullStr Cluster and fold stability of E. coli ISC-type ferredoxin.
title_full_unstemmed Cluster and fold stability of E. coli ISC-type ferredoxin.
title_sort cluster and fold stability of e. coli isc-type ferredoxin.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description Iron-sulfur clusters are essential protein prosthetic groups that provide their redox potential to several different metabolic pathways. Formation of iron-sulfur clusters is assisted by a specialised machine that comprises, among other proteins, a ferredoxin. As a first step to elucidate the precise role of this protein in cluster assembly, we have studied the factors governing the stability and the dynamic properties of E. coli ferredoxin using different spectroscopic techniques. The cluster-loaded protein is monomeric and well structured with a flexible C-terminus but is highly oxygen sensitive so that it readily loses the cluster leading to an irreversible unfolding under aerobic conditions. This process is slowed down by reducing conditions and high ionic strengths. NMR relaxation experiments on the cluster-loaded protein also show that, once the cluster is in place, the protein forms a globular and relatively rigid domain. These data indicate that the presence of the iron-sulfur cluster is the switch between a functional and a non-functional state.
url http://europepmc.org/articles/PMC3827102?pdf=render
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