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Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS

In Escherichia coli, the biogenesis of both cytochrome bd-type quinol oxidases and periplasmic cytochromes requires the ATP-binding cassette-type cysteine/GSH transporter, CydDC. Recombinant CydDC was purified as a heterodimer and found to be an active ATPase both in soluble form with detergent and...

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Autores principales: Yamashita, Masao, Shepherd, Mark, Booth, Wesley I., Xie, Hao, Postis, Vincent, Nyathi, Yvonne, Tzokov, Svetomir B., Poole, Robert K., Baldwin, Stephen A., Bullough, Per A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4132815/
https://www.ncbi.nlm.nih.gov/pubmed/24958725
http://dx.doi.org/10.1074/jbc.M114.590414
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author Yamashita, Masao
Shepherd, Mark
Booth, Wesley I.
Xie, Hao
Postis, Vincent
Nyathi, Yvonne
Tzokov, Svetomir B.
Poole, Robert K.
Baldwin, Stephen A.
Bullough, Per A.
author_facet Yamashita, Masao
Shepherd, Mark
Booth, Wesley I.
Xie, Hao
Postis, Vincent
Nyathi, Yvonne
Tzokov, Svetomir B.
Poole, Robert K.
Baldwin, Stephen A.
Bullough, Per A.
author_sort Yamashita, Masao
collection PubMed
description In Escherichia coli, the biogenesis of both cytochrome bd-type quinol oxidases and periplasmic cytochromes requires the ATP-binding cassette-type cysteine/GSH transporter, CydDC. Recombinant CydDC was purified as a heterodimer and found to be an active ATPase both in soluble form with detergent and when reconstituted into a lipid environment. Two-dimensional crystals of CydDC were analyzed by electron cryomicroscopy, and the protein was shown to be made up of two non-identical domains corresponding to the putative CydD and CydC subunits, with dimensions characteristic of other ATP-binding cassette transporters. CydDC binds heme b. Detergent-solubilized CydDC appears to adopt at least two structural states, each associated with a characteristic level of bound heme. The purified protein in detergent showed a weak basal ATPase activity (approximately 100 nmol P(i)/min/mg) that was stimulated ∼3-fold by various thiol compounds, suggesting that CydDC could act as a thiol transporter. The presence of heme (either intrinsic or added in the form of hemin) led to a further enhancement of thiol-stimulated ATPase activity, although a large excess of heme inhibited activity. Similar responses of the ATPase activity were observed with CydDC reconstituted into E. coli lipids. These results suggest that heme may have a regulatory role in CydDC-mediated transmembrane thiol transport.
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spelling pubmed-41328152014-08-19 Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS Yamashita, Masao Shepherd, Mark Booth, Wesley I. Xie, Hao Postis, Vincent Nyathi, Yvonne Tzokov, Svetomir B. Poole, Robert K. Baldwin, Stephen A. Bullough, Per A. J Biol Chem Membrane Biology In Escherichia coli, the biogenesis of both cytochrome bd-type quinol oxidases and periplasmic cytochromes requires the ATP-binding cassette-type cysteine/GSH transporter, CydDC. Recombinant CydDC was purified as a heterodimer and found to be an active ATPase both in soluble form with detergent and when reconstituted into a lipid environment. Two-dimensional crystals of CydDC were analyzed by electron cryomicroscopy, and the protein was shown to be made up of two non-identical domains corresponding to the putative CydD and CydC subunits, with dimensions characteristic of other ATP-binding cassette transporters. CydDC binds heme b. Detergent-solubilized CydDC appears to adopt at least two structural states, each associated with a characteristic level of bound heme. The purified protein in detergent showed a weak basal ATPase activity (approximately 100 nmol P(i)/min/mg) that was stimulated ∼3-fold by various thiol compounds, suggesting that CydDC could act as a thiol transporter. The presence of heme (either intrinsic or added in the form of hemin) led to a further enhancement of thiol-stimulated ATPase activity, although a large excess of heme inhibited activity. Similar responses of the ATPase activity were observed with CydDC reconstituted into E. coli lipids. These results suggest that heme may have a regulatory role in CydDC-mediated transmembrane thiol transport. American Society for Biochemistry and Molecular Biology 2014-08-15 2014-06-23 /pmc/articles/PMC4132815/ /pubmed/24958725 http://dx.doi.org/10.1074/jbc.M114.590414 Text en © 2014 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Unported License (http://creativecommons.org/licenses/by/3.0/) applies to Author Choice Articles
spellingShingle Membrane Biology
Yamashita, Masao
Shepherd, Mark
Booth, Wesley I.
Xie, Hao
Postis, Vincent
Nyathi, Yvonne
Tzokov, Svetomir B.
Poole, Robert K.
Baldwin, Stephen A.
Bullough, Per A.
Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title_full Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title_fullStr Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title_full_unstemmed Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title_short Structure and Function of the Bacterial Heterodimeric ABC Transporter CydDC: STIMULATION OF ATPASE ACTIVITY BY THIOL AND HEME COMPOUNDS
title_sort structure and function of the bacterial heterodimeric abc transporter cyddc: stimulation of atpase activity by thiol and heme compounds
topic Membrane Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4132815/
https://www.ncbi.nlm.nih.gov/pubmed/24958725
http://dx.doi.org/10.1074/jbc.M114.590414
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