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Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)

[Image: see text] The DUF1094 family contains over 100 bacterial proteins, all containing a conserved CXC motif, with unknown function. We solved the crystal structure of the Bacillus subtilis representative, the product of the yphP gene. The protein shows remarkable structural similarity to thiored...

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Autores principales: Derewenda, Urszula, Boczek, Tomasz, Gorres, Kelly L., Yu, Minmin, Hung, Li-wei, Cooper, David, Joachimiak, Andrzej, Raines, Ronald T., Derewenda, Zygmunt S.
Formato: Texto
Lenguaje:English
Publicado: American Chemical Society 2009
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2739605/
https://www.ncbi.nlm.nih.gov/pubmed/19653655
http://dx.doi.org/10.1021/bi900437z
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author Derewenda, Urszula
Boczek, Tomasz
Gorres, Kelly L.
Yu, Minmin
Hung, Li-wei
Cooper, David
Joachimiak, Andrzej
Raines, Ronald T.
Derewenda, Zygmunt S.
author_facet Derewenda, Urszula
Boczek, Tomasz
Gorres, Kelly L.
Yu, Minmin
Hung, Li-wei
Cooper, David
Joachimiak, Andrzej
Raines, Ronald T.
Derewenda, Zygmunt S.
author_sort Derewenda, Urszula
collection PubMed
description [Image: see text] The DUF1094 family contains over 100 bacterial proteins, all containing a conserved CXC motif, with unknown function. We solved the crystal structure of the Bacillus subtilis representative, the product of the yphP gene. The protein shows remarkable structural similarity to thioredoxins, with a canonical αβαβαββα topology, despite low amino acid sequence identity to thioredoxin. The CXC motif is found in the loop immediately downstream of the first β-strand, in a location equivalent to the CXXC motif of thioredoxins, with the first Cys occupying a position equivalent to the first Cys in canonical thioredoxin. The experimentally determined reduction potential of YphP is E°′ = −130 mV, significantly higher than that of thioredoxin and consistent with disulfide isomerase activity. Functional assays confirmed that the protein displays a level of isomerase activity that might be biologically significant. We propose a mechanism by which the members of this family catalyze isomerization using the CXC catalytic site.
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spelling pubmed-27396052009-09-08 Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,) Derewenda, Urszula Boczek, Tomasz Gorres, Kelly L. Yu, Minmin Hung, Li-wei Cooper, David Joachimiak, Andrzej Raines, Ronald T. Derewenda, Zygmunt S. Biochemistry [Image: see text] The DUF1094 family contains over 100 bacterial proteins, all containing a conserved CXC motif, with unknown function. We solved the crystal structure of the Bacillus subtilis representative, the product of the yphP gene. The protein shows remarkable structural similarity to thioredoxins, with a canonical αβαβαββα topology, despite low amino acid sequence identity to thioredoxin. The CXC motif is found in the loop immediately downstream of the first β-strand, in a location equivalent to the CXXC motif of thioredoxins, with the first Cys occupying a position equivalent to the first Cys in canonical thioredoxin. The experimentally determined reduction potential of YphP is E°′ = −130 mV, significantly higher than that of thioredoxin and consistent with disulfide isomerase activity. Functional assays confirmed that the protein displays a level of isomerase activity that might be biologically significant. We propose a mechanism by which the members of this family catalyze isomerization using the CXC catalytic site. American Chemical Society 2009-08-04 2009-09-15 /pmc/articles/PMC2739605/ /pubmed/19653655 http://dx.doi.org/10.1021/bi900437z Text en Copyright © 2009 American Chemical Society http://pubs.acs.org This is an open-access article distributed under the ACS AuthorChoice Terms & Conditions. Any use of this article, must conform to the terms of that license which are available at http://pubs.acs.org.
spellingShingle Derewenda, Urszula
Boczek, Tomasz
Gorres, Kelly L.
Yu, Minmin
Hung, Li-wei
Cooper, David
Joachimiak, Andrzej
Raines, Ronald T.
Derewenda, Zygmunt S.
Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title_full Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title_fullStr Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title_full_unstemmed Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title_short Structure and Function of Bacillus subtilis YphP, a Prokaryotic Disulfide Isomerase with a CXC Catalytic Motif(,)
title_sort structure and function of bacillus subtilis yphp, a prokaryotic disulfide isomerase with a cxc catalytic motif(,)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2739605/
https://www.ncbi.nlm.nih.gov/pubmed/19653655
http://dx.doi.org/10.1021/bi900437z
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