Cargando…
The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster
The arsenite oxidase (Aio) from the facultative autotrophic Alphaproteobacterium Rhizobium sp. NT-26 is a bioenergetic enzyme involved in the oxidation of arsenite to arsenate. The enzyme from the distantly related heterotroph, Alcaligenes faecalis, which is thought to oxidise arsenite for detoxific...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3758308/ https://www.ncbi.nlm.nih.gov/pubmed/24023621 http://dx.doi.org/10.1371/journal.pone.0072535 |
_version_ | 1782282399215779840 |
---|---|
author | Warelow, Thomas P. Oke, Muse Schoepp-Cothenet, Barbara Dahl, Jan U. Bruselat, Nicole Sivalingam, Ganesh N. Leimkühler, Silke Thalassinos, Konstantinos Kappler, Ulrike Naismith, James H. Santini, Joanne M. |
author_facet | Warelow, Thomas P. Oke, Muse Schoepp-Cothenet, Barbara Dahl, Jan U. Bruselat, Nicole Sivalingam, Ganesh N. Leimkühler, Silke Thalassinos, Konstantinos Kappler, Ulrike Naismith, James H. Santini, Joanne M. |
author_sort | Warelow, Thomas P. |
collection | PubMed |
description | The arsenite oxidase (Aio) from the facultative autotrophic Alphaproteobacterium Rhizobium sp. NT-26 is a bioenergetic enzyme involved in the oxidation of arsenite to arsenate. The enzyme from the distantly related heterotroph, Alcaligenes faecalis, which is thought to oxidise arsenite for detoxification, consists of a large α subunit (AioA) with bis-molybdopterin guanine dinucleotide at its active site and a 3Fe-4S cluster, and a small β subunit (AioB) which contains a Rieske 2Fe-2S cluster. The successful heterologous expression of the NT-26 Aio in Escherichia coli has resulted in the solution of its crystal structure. The NT-26 Aio, a heterotetramer, shares high overall similarity to the heterodimeric arsenite oxidase from A. faecalis but there are striking differences in the structure surrounding the Rieske 2Fe-2S cluster which we demonstrate explains the difference in the observed redox potentials (+225 mV vs. +130/160 mV, respectively). A combination of site-directed mutagenesis and electron paramagnetic resonance was used to explore the differences observed in the structure and redox properties of the Rieske cluster. In the NT-26 AioB the substitution of a serine (S126 in NT-26) for a threonine as in the A. faecalis AioB explains a −20 mV decrease in redox potential. The disulphide bridge in the A. faecalis AioB which is conserved in other betaproteobacterial AioB subunits and the Rieske subunit of the cytochrome bc (1) complex is absent in the NT-26 AioB subunit. The introduction of a disulphide bridge had no effect on Aio activity or protein stability but resulted in a decrease in the redox potential of the cluster. These results are in conflict with previous data on the betaproteobacterial AioB subunit and the Rieske of the bc (1) complex where removal of the disulphide bridge had no effect on the redox potential of the former but a decrease in cluster stability was observed in the latter. |
format | Online Article Text |
id | pubmed-3758308 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-37583082013-09-10 The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster Warelow, Thomas P. Oke, Muse Schoepp-Cothenet, Barbara Dahl, Jan U. Bruselat, Nicole Sivalingam, Ganesh N. Leimkühler, Silke Thalassinos, Konstantinos Kappler, Ulrike Naismith, James H. Santini, Joanne M. PLoS One Research Article The arsenite oxidase (Aio) from the facultative autotrophic Alphaproteobacterium Rhizobium sp. NT-26 is a bioenergetic enzyme involved in the oxidation of arsenite to arsenate. The enzyme from the distantly related heterotroph, Alcaligenes faecalis, which is thought to oxidise arsenite for detoxification, consists of a large α subunit (AioA) with bis-molybdopterin guanine dinucleotide at its active site and a 3Fe-4S cluster, and a small β subunit (AioB) which contains a Rieske 2Fe-2S cluster. The successful heterologous expression of the NT-26 Aio in Escherichia coli has resulted in the solution of its crystal structure. The NT-26 Aio, a heterotetramer, shares high overall similarity to the heterodimeric arsenite oxidase from A. faecalis but there are striking differences in the structure surrounding the Rieske 2Fe-2S cluster which we demonstrate explains the difference in the observed redox potentials (+225 mV vs. +130/160 mV, respectively). A combination of site-directed mutagenesis and electron paramagnetic resonance was used to explore the differences observed in the structure and redox properties of the Rieske cluster. In the NT-26 AioB the substitution of a serine (S126 in NT-26) for a threonine as in the A. faecalis AioB explains a −20 mV decrease in redox potential. The disulphide bridge in the A. faecalis AioB which is conserved in other betaproteobacterial AioB subunits and the Rieske subunit of the cytochrome bc (1) complex is absent in the NT-26 AioB subunit. The introduction of a disulphide bridge had no effect on Aio activity or protein stability but resulted in a decrease in the redox potential of the cluster. These results are in conflict with previous data on the betaproteobacterial AioB subunit and the Rieske of the bc (1) complex where removal of the disulphide bridge had no effect on the redox potential of the former but a decrease in cluster stability was observed in the latter. Public Library of Science 2013-08-30 /pmc/articles/PMC3758308/ /pubmed/24023621 http://dx.doi.org/10.1371/journal.pone.0072535 Text en © 2013 Warelow 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 Warelow, Thomas P. Oke, Muse Schoepp-Cothenet, Barbara Dahl, Jan U. Bruselat, Nicole Sivalingam, Ganesh N. Leimkühler, Silke Thalassinos, Konstantinos Kappler, Ulrike Naismith, James H. Santini, Joanne M. The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title | The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title_full | The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title_fullStr | The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title_full_unstemmed | The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title_short | The Respiratory Arsenite Oxidase: Structure and the Role of Residues Surrounding the Rieske Cluster |
title_sort | respiratory arsenite oxidase: structure and the role of residues surrounding the rieske cluster |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3758308/ https://www.ncbi.nlm.nih.gov/pubmed/24023621 http://dx.doi.org/10.1371/journal.pone.0072535 |
work_keys_str_mv | AT warelowthomasp therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT okemuse therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT schoeppcothenetbarbara therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT dahljanu therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT bruselatnicole therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT sivalingamganeshn therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT leimkuhlersilke therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT thalassinoskonstantinos therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT kapplerulrike therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT naismithjamesh therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT santinijoannem therespiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT warelowthomasp respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT okemuse respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT schoeppcothenetbarbara respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT dahljanu respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT bruselatnicole respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT sivalingamganeshn respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT leimkuhlersilke respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT thalassinoskonstantinos respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT kapplerulrike respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT naismithjamesh respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster AT santinijoannem respiratoryarseniteoxidasestructureandtheroleofresiduessurroundingtherieskecluster |