The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones

Ihnatenko, Irina - Müller, Marco J. - Orban, Oliver C. F. - Lindhof, Jens C. - Benítez, Diego - Ortíz, Cecilia - Dibello, Estefanía - Seidl, Leonardo L. - Comini, Marcelo A. - Kunick, Conrad

Resumen:

Severe infections with potentially fatal outcomes are caused by parasites from the genera Trypanosoma and Leishmania (class Kinetoplastea). The diseases affect people of remote areas in the tropics and subtropics with limited access to adequate health care. Besides insufficient diagnostics, treatment options are limited, with tenuous developments in recent years. Therefore, new antitrypanosomal antiinfectives are required to fight these maladies. In the presented approach, new compounds were developed and tested on the target trypa nothione synthetase (TryS). This enzyme is crucial to the kinetoplastids’ unique trypa nothione-based thiol redox metabolism and thus for pathogen survival. Preceding studies have shown that N5 -substituted paullones display antitrypanosomal activity as well as TryS inhibition. Herein, this compound class was further examined regarding the structure-activity relationships (SAR). Diverse benzazepinone derivatives were designed and tested in cell based assays on bloodstream Trypanosoma brucei brucei (T. b. brucei) and intracellular amastigotes of Leishmania infantum (L. infantum) as well as in enzyme-based assays on L. infantum TryS (LiTryS) and T. b. brucei TryS (TbTryS). While an exchange of just the sub stituent in the 9-position of paullones led to potent inhibitors on LiTryS and T. b. brucei para sites, new compounds lacking the indole moiety showed a total loss of activity in both assays. Conclusively, the indole as part of the paullone structure is pivotal for keeping the TryS inhibitory and antitrypanosomal activity of this substance class.

Detalles Bibliográficos
2023
PARASITOS
INFECCIONES
ANTIPARASITARIOS
Inglés
Universidad de la República
COLIBRI
https://hdl.handle.net/20.500.12008/42944
Acceso abierto
Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
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author Ihnatenko, Irina
author2 Müller, Marco J.
Orban, Oliver C. F.
Lindhof, Jens C.
Benítez, Diego
Ortíz, Cecilia
Dibello, Estefanía
Seidl, Leonardo L.
Comini, Marcelo A.
Kunick, Conrad
author2_role author
author
author
author
author
author
author
author
author
author_facet Ihnatenko, Irina
Müller, Marco J.
Orban, Oliver C. F.
Lindhof, Jens C.
Benítez, Diego
Ortíz, Cecilia
Dibello, Estefanía
Seidl, Leonardo L.
Comini, Marcelo A.
Kunick, Conrad
author_role author
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collection COLIBRI
dc.contributor.filiacion.none.fl_str_mv Ihnatenko Irina, PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry
Müller Marco J., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry
Orban Oliver C. F., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry
Lindhof Jens C., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry
Benítez Diego, Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos
Ortíz Cecilia, Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos
Dibello Estefanía, Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos; Universidad de la República (Uruguay) Facultad de Química. Departamento de Química Orgánica. Laboratorio de Síntesis Orgánica.
Seidl Leonardo L., Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos
Comini Marcelo A., Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos
Kunick Conrad, PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry
dc.creator.none.fl_str_mv Ihnatenko, Irina
Müller, Marco J.
Orban, Oliver C. F.
Lindhof, Jens C.
Benítez, Diego
Ortíz, Cecilia
Dibello, Estefanía
Seidl, Leonardo L.
Comini, Marcelo A.
Kunick, Conrad
dc.date.accessioned.none.fl_str_mv 2024-03-05T15:53:22Z
dc.date.available.none.fl_str_mv 2024-03-05T15:53:22Z
dc.date.issued.none.fl_str_mv 2023
dc.description.abstract.none.fl_txt_mv Severe infections with potentially fatal outcomes are caused by parasites from the genera Trypanosoma and Leishmania (class Kinetoplastea). The diseases affect people of remote areas in the tropics and subtropics with limited access to adequate health care. Besides insufficient diagnostics, treatment options are limited, with tenuous developments in recent years. Therefore, new antitrypanosomal antiinfectives are required to fight these maladies. In the presented approach, new compounds were developed and tested on the target trypa nothione synthetase (TryS). This enzyme is crucial to the kinetoplastids’ unique trypa nothione-based thiol redox metabolism and thus for pathogen survival. Preceding studies have shown that N5 -substituted paullones display antitrypanosomal activity as well as TryS inhibition. Herein, this compound class was further examined regarding the structure-activity relationships (SAR). Diverse benzazepinone derivatives were designed and tested in cell based assays on bloodstream Trypanosoma brucei brucei (T. b. brucei) and intracellular amastigotes of Leishmania infantum (L. infantum) as well as in enzyme-based assays on L. infantum TryS (LiTryS) and T. b. brucei TryS (TbTryS). While an exchange of just the sub stituent in the 9-position of paullones led to potent inhibitors on LiTryS and T. b. brucei para sites, new compounds lacking the indole moiety showed a total loss of activity in both assays. Conclusively, the indole as part of the paullone structure is pivotal for keeping the TryS inhibitory and antitrypanosomal activity of this substance class.
dc.format.extent.es.fl_str_mv 58 p.
dc.format.mimetype.es.fl_str_mv application/pdf
dc.identifier.citation.es.fl_str_mv Ihnatenko, I., Müller, M., Orban, O. y otros. "The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones". PloS one [en línea] 2023, v.18, n°11, e0292946, 58 p. DOI: 10.1371/journal. pone.0292946
dc.identifier.doi.none.fl_str_mv 10.1371/journal. pone.0292946
dc.identifier.uri.none.fl_str_mv https://hdl.handle.net/20.500.12008/42944
dc.language.iso.none.fl_str_mv en
eng
dc.publisher.es.fl_str_mv PLOS
dc.relation.none.fl_str_mv PloS one, v.18, n°11, 2023. -- e0292946
dc.rights.license.none.fl_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
dc.rights.none.fl_str_mv info:eu-repo/semantics/openAccess
dc.source.none.fl_str_mv reponame:COLIBRI
instname:Universidad de la República
instacron:Universidad de la República
dc.subject.other.es.fl_str_mv PARASITOS
INFECCIONES
ANTIPARASITARIOS
dc.title.none.fl_str_mv The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
dc.type.es.fl_str_mv Artículo
dc.type.none.fl_str_mv info:eu-repo/semantics/article
dc.type.version.none.fl_str_mv info:eu-repo/semantics/publishedVersion
description Severe infections with potentially fatal outcomes are caused by parasites from the genera Trypanosoma and Leishmania (class Kinetoplastea). The diseases affect people of remote areas in the tropics and subtropics with limited access to adequate health care. Besides insufficient diagnostics, treatment options are limited, with tenuous developments in recent years. Therefore, new antitrypanosomal antiinfectives are required to fight these maladies. In the presented approach, new compounds were developed and tested on the target trypa nothione synthetase (TryS). This enzyme is crucial to the kinetoplastids’ unique trypa nothione-based thiol redox metabolism and thus for pathogen survival. Preceding studies have shown that N5 -substituted paullones display antitrypanosomal activity as well as TryS inhibition. Herein, this compound class was further examined regarding the structure-activity relationships (SAR). Diverse benzazepinone derivatives were designed and tested in cell based assays on bloodstream Trypanosoma brucei brucei (T. b. brucei) and intracellular amastigotes of Leishmania infantum (L. infantum) as well as in enzyme-based assays on L. infantum TryS (LiTryS) and T. b. brucei TryS (TbTryS). While an exchange of just the sub stituent in the 9-position of paullones led to potent inhibitors on LiTryS and T. b. brucei para sites, new compounds lacking the indole moiety showed a total loss of activity in both assays. Conclusively, the indole as part of the paullone structure is pivotal for keeping the TryS inhibitory and antitrypanosomal activity of this substance class.
eu_rights_str_mv openAccess
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identifier_str_mv Ihnatenko, I., Müller, M., Orban, O. y otros. "The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones". PloS one [en línea] 2023, v.18, n°11, e0292946, 58 p. DOI: 10.1371/journal. pone.0292946
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repository.mail.fl_str_mv karina.camps@seciu.edu.uy
repository.name.fl_str_mv COLIBRI - Universidad de la República
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rights_invalid_str_mv Licencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)
spelling Ihnatenko Irina, PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical ChemistryMüller Marco J., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical ChemistryOrban Oliver C. F., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical ChemistryLindhof Jens C., PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical ChemistryBenítez Diego, Instituto Pasteur (Uruguay). Grupo Biología Redox de TripanosomátidosOrtíz Cecilia, Instituto Pasteur (Uruguay). Grupo Biología Redox de TripanosomátidosDibello Estefanía, Instituto Pasteur (Uruguay). Grupo Biología Redox de Tripanosomátidos; Universidad de la República (Uruguay) Facultad de Química. Departamento de Química Orgánica. Laboratorio de Síntesis Orgánica.Seidl Leonardo L., Instituto Pasteur (Uruguay). Grupo Biología Redox de TripanosomátidosComini Marcelo A., Instituto Pasteur (Uruguay). Grupo Biología Redox de TripanosomátidosKunick Conrad, PVZ–Center of Pharmaceutical Engineering (Alemania). Institute of Medicinal and Pharmaceutical Chemistry2024-03-05T15:53:22Z2024-03-05T15:53:22Z2023Ihnatenko, I., Müller, M., Orban, O. y otros. "The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones". PloS one [en línea] 2023, v.18, n°11, e0292946, 58 p. DOI: 10.1371/journal. pone.0292946https://hdl.handle.net/20.500.12008/4294410.1371/journal. pone.0292946Severe infections with potentially fatal outcomes are caused by parasites from the genera Trypanosoma and Leishmania (class Kinetoplastea). The diseases affect people of remote areas in the tropics and subtropics with limited access to adequate health care. Besides insufficient diagnostics, treatment options are limited, with tenuous developments in recent years. Therefore, new antitrypanosomal antiinfectives are required to fight these maladies. In the presented approach, new compounds were developed and tested on the target trypa nothione synthetase (TryS). This enzyme is crucial to the kinetoplastids’ unique trypa nothione-based thiol redox metabolism and thus for pathogen survival. Preceding studies have shown that N5 -substituted paullones display antitrypanosomal activity as well as TryS inhibition. Herein, this compound class was further examined regarding the structure-activity relationships (SAR). Diverse benzazepinone derivatives were designed and tested in cell based assays on bloodstream Trypanosoma brucei brucei (T. b. brucei) and intracellular amastigotes of Leishmania infantum (L. infantum) as well as in enzyme-based assays on L. infantum TryS (LiTryS) and T. b. brucei TryS (TbTryS). While an exchange of just the sub stituent in the 9-position of paullones led to potent inhibitors on LiTryS and T. b. brucei para sites, new compounds lacking the indole moiety showed a total loss of activity in both assays. Conclusively, the indole as part of the paullone structure is pivotal for keeping the TryS inhibitory and antitrypanosomal activity of this substance class.Submitted by Cabrera Jeniffer (jenikana@gmail.com) on 2024-03-05T15:52:53Z No. of bitstreams: 2 license_rdf: 25790 bytes, checksum: 489f03e71d39068f329bdec8798bce58 (MD5) Ihnatenko, I. et al..pdf: 5719811 bytes, checksum: 0f49c8bd801dd69a3480d8b11a569728 (MD5)Made available in DSpace by Luna Fabiana (fabiana.luna@seciu.edu.uy) on 2024-03-05T15:53:22Z (GMT). No. of bitstreams: 2 license_rdf: 25790 bytes, checksum: 489f03e71d39068f329bdec8798bce58 (MD5) Ihnatenko, I. et al..pdf: 5719811 bytes, checksum: 0f49c8bd801dd69a3480d8b11a569728 (MD5) Previous issue date: 202358 p.application/pdfenengPLOSPloS one, v.18, n°11, 2023. -- e0292946Las obras depositadas en el Repositorio se rigen por la Ordenanza de los Derechos de la Propiedad Intelectual de la Universidad de la República.(Res. Nº 91 de C.D.C. de 8/III/1994 – D.O. 7/IV/1994) y por la Ordenanza del Repositorio Abierto de la Universidad de la República (Res. Nº 16 de C.D.C. de 07/10/2014)info:eu-repo/semantics/openAccessLicencia Creative Commons Atribución - No Comercial - Sin Derivadas (CC - By-NC-ND 4.0)PARASITOSINFECCIONESANTIPARASITARIOSThe indole motif is essential for the antitrypanosomal activity of N5-substituted paullonesArtículoinfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionreponame:COLIBRIinstname:Universidad de la Repúblicainstacron:Universidad de la RepúblicaIhnatenko, IrinaMüller, Marco J.Orban, Oliver C. 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- Universidad de la Repúblicafalse
spellingShingle The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
Ihnatenko, Irina
PARASITOS
INFECCIONES
ANTIPARASITARIOS
status_str publishedVersion
title The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
title_full The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
title_fullStr The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
title_full_unstemmed The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
title_short The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
title_sort The indole motif is essential for the antitrypanosomal activity of N5-substituted paullones
topic PARASITOS
INFECCIONES
ANTIPARASITARIOS
url https://hdl.handle.net/20.500.12008/42944