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Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase

The trypanothione synthetase (TryS) catalyses the two-step biosynthesis of trypanothione from spermidine and glutathione and is an attractive new drug target for the development of trypanocidal and antileishmanial drugs, especially since the structural information of TryS from Leishmania major has b...

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Autores principales: Koch, Oliver, Cappel, Daniel, Nocker, Monika, Jäger, Timo, Flohé, Leopold, Sotriffer, Christoph A., Selzer, Paul M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581523/
https://www.ncbi.nlm.nih.gov/pubmed/23451087
http://dx.doi.org/10.1371/journal.pone.0056788
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author Koch, Oliver
Cappel, Daniel
Nocker, Monika
Jäger, Timo
Flohé, Leopold
Sotriffer, Christoph A.
Selzer, Paul M.
author_facet Koch, Oliver
Cappel, Daniel
Nocker, Monika
Jäger, Timo
Flohé, Leopold
Sotriffer, Christoph A.
Selzer, Paul M.
author_sort Koch, Oliver
collection PubMed
description The trypanothione synthetase (TryS) catalyses the two-step biosynthesis of trypanothione from spermidine and glutathione and is an attractive new drug target for the development of trypanocidal and antileishmanial drugs, especially since the structural information of TryS from Leishmania major has become available. Unfortunately, the TryS structure was solved without any of the substrates and lacks loop regions that are mechanistically important. This contribution describes docking and molecular dynamics simulations that led to further insights into trypanothione biosynthesis and, in particular, explains the binding modes of substrates for the second catalytic step. The structural model essentially confirm previously proposed binding sites for glutathione, ATP and two Mg(2+) ions, which appear identical for both catalytic steps. The analysis of an unsolved loop region near the proposed spermidine binding site revealed a new pocket that was demonstrated to bind glutathionylspermidine in an inverted orientation. For the second step of trypanothione synthesis glutathionylspermidine is bound in a way that preferentially allows N(1)-glutathionylation of N(8)-glutathionylspermidine, classifying N(8)-glutathionylspermidine as the favoured substrate. By inhibitor docking, the binding site for N(8)-glutathionylspermidine was characterised as druggable.
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spelling pubmed-35815232013-02-28 Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase Koch, Oliver Cappel, Daniel Nocker, Monika Jäger, Timo Flohé, Leopold Sotriffer, Christoph A. Selzer, Paul M. PLoS One Research Article The trypanothione synthetase (TryS) catalyses the two-step biosynthesis of trypanothione from spermidine and glutathione and is an attractive new drug target for the development of trypanocidal and antileishmanial drugs, especially since the structural information of TryS from Leishmania major has become available. Unfortunately, the TryS structure was solved without any of the substrates and lacks loop regions that are mechanistically important. This contribution describes docking and molecular dynamics simulations that led to further insights into trypanothione biosynthesis and, in particular, explains the binding modes of substrates for the second catalytic step. The structural model essentially confirm previously proposed binding sites for glutathione, ATP and two Mg(2+) ions, which appear identical for both catalytic steps. The analysis of an unsolved loop region near the proposed spermidine binding site revealed a new pocket that was demonstrated to bind glutathionylspermidine in an inverted orientation. For the second step of trypanothione synthesis glutathionylspermidine is bound in a way that preferentially allows N(1)-glutathionylation of N(8)-glutathionylspermidine, classifying N(8)-glutathionylspermidine as the favoured substrate. By inhibitor docking, the binding site for N(8)-glutathionylspermidine was characterised as druggable. Public Library of Science 2013-02-25 /pmc/articles/PMC3581523/ /pubmed/23451087 http://dx.doi.org/10.1371/journal.pone.0056788 Text en © 2013 Koch 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
Koch, Oliver
Cappel, Daniel
Nocker, Monika
Jäger, Timo
Flohé, Leopold
Sotriffer, Christoph A.
Selzer, Paul M.
Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title_full Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title_fullStr Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title_full_unstemmed Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title_short Molecular Dynamics Reveal Binding Mode of Glutathionylspermidine by Trypanothione Synthetase
title_sort molecular dynamics reveal binding mode of glutathionylspermidine by trypanothione synthetase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3581523/
https://www.ncbi.nlm.nih.gov/pubmed/23451087
http://dx.doi.org/10.1371/journal.pone.0056788
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