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Structural Characterisation of Tpx from Yersinia pseudotuberculosis Reveals Insights into the Binding of Salicylidene Acylhydrazide Compounds

Overview of attention for article published in PLOS ONE, February 2012
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Title
Structural Characterisation of Tpx from Yersinia pseudotuberculosis Reveals Insights into the Binding of Salicylidene Acylhydrazide Compounds
Published in
PLOS ONE, February 2012
DOI 10.1371/journal.pone.0032217
Pubmed ID
Authors

Mads Gabrielsen, Katherine S. H. Beckham, Victoria A. Feher, Caroline E. Zetterström, Dai Wang, Sylke Müller, Mikael Elofsson, Rommie E. Amaro, Olwyn Byron, Andrew J. Roe

Abstract

Thiol peroxidase, Tpx, has been shown to be a target protein of the salicylidene acylhydrazide class of antivirulence compounds. In this study we present the crystal structures of Tpx from Y. pseudotuberculosis (ypTpx) in the oxidised and reduced states, together with the structure of the C61S mutant. The structures solved are consistent with previously solved atypical 2-Cys thiol peroxidases, including that for "forced" reduced states using the C61S mutant. In addition, by investigating the solution structure of ypTpx using small angle X-ray scattering (SAXS), we have confirmed that reduced state ypTpx in solution is a homodimer. The solution structure also reveals flexibility around the dimer interface. Notably, the conformational changes observed between the redox states at the catalytic triad and at the dimer interface have implications for substrate and inhibitor binding. The structural data were used to model the binding of two salicylidene acylhydrazide compounds to the oxidised structure of ypTpx. Overall, the study provides insights into the binding of the salicylidene acylhydrazides to ypTpx, aiding our long-term strategy to understand the mode of action of this class of compounds.

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Geographical breakdown

Country Count As %
Ireland 1 3%
Unknown 28 97%

Demographic breakdown

Readers by professional status Count As %
Researcher 6 21%
Student > Ph. D. Student 5 17%
Student > Bachelor 4 14%
Student > Master 4 14%
Professor > Associate Professor 3 10%
Other 4 14%
Unknown 3 10%
Readers by discipline Count As %
Agricultural and Biological Sciences 11 38%
Chemistry 6 21%
Biochemistry, Genetics and Molecular Biology 5 17%
Medicine and Dentistry 2 7%
Pharmacology, Toxicology and Pharmaceutical Science 1 3%
Other 1 3%
Unknown 3 10%