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High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a

The poultry disease coccidiosis, caused by infection with Eimeria spp. apicomplexan parasites, is responsible for enormous economic losses to the global poultry industry. The rapid increase of resistance to therapeutic agents, as well as the expense of vaccination with live attenuated vaccines, requ...

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Autores principales: Fernández, María L. Suárez, Engels, Kristin K., Bender, Frank, Gassel, Michael, Marhöfer, Richard J., Mottram, Jeremy C., Selzer, Paul M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for General Microbiology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3542813/
https://www.ncbi.nlm.nih.gov/pubmed/22723289
http://dx.doi.org/10.1099/mic.0.059428-0
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author Fernández, María L. Suárez
Engels, Kristin K.
Bender, Frank
Gassel, Michael
Marhöfer, Richard J.
Mottram, Jeremy C.
Selzer, Paul M.
author_facet Fernández, María L. Suárez
Engels, Kristin K.
Bender, Frank
Gassel, Michael
Marhöfer, Richard J.
Mottram, Jeremy C.
Selzer, Paul M.
author_sort Fernández, María L. Suárez
collection PubMed
description The poultry disease coccidiosis, caused by infection with Eimeria spp. apicomplexan parasites, is responsible for enormous economic losses to the global poultry industry. The rapid increase of resistance to therapeutic agents, as well as the expense of vaccination with live attenuated vaccines, requires the development of new effective treatments for coccidiosis. Because of their key regulatory function in the eukaryotic cell cycle, cyclin-dependent kinases (CDKs) are prominent drug targets. The Eimeria tenella CDC2-related kinase 2 (EtCRK2) is a validated drug target that can be activated in vitro by the CDK activator XlRINGO (Xenopus laevis rapid inducer of G2/M progression in oocytes). Bioinformatics analyses revealed four putative E. tenella cyclins (EtCYCs) that are closely related to cyclins found in the human apicomplexan parasite Plasmodium falciparum. EtCYC3a was cloned, expressed in Escherichia coli and purified in a complex with EtCRK2. Using the non-radioactive time-resolved fluorescence energy transfer (TR-FRET) assay, we demonstrated the ability of EtCYC3a to activate EtCRK2 as shown previously for XlRINGO. The EtCRK2/EtCYC3a complex was used for a combined in vitro and in silico high-throughput screening approach, which resulted in three lead structures, a naphthoquinone, an 8-hydroxyquinoline and a 2-pyrimidinyl-aminopiperidine-propane-2-ol. This constitutes a promising starting point for the subsequent lead optimization phase and the development of novel anticoccidial drugs.
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spelling pubmed-35428132013-04-24 High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a Fernández, María L. Suárez Engels, Kristin K. Bender, Frank Gassel, Michael Marhöfer, Richard J. Mottram, Jeremy C. Selzer, Paul M. Microbiology (Reading) Cell and Molecular Biology of Microbes The poultry disease coccidiosis, caused by infection with Eimeria spp. apicomplexan parasites, is responsible for enormous economic losses to the global poultry industry. The rapid increase of resistance to therapeutic agents, as well as the expense of vaccination with live attenuated vaccines, requires the development of new effective treatments for coccidiosis. Because of their key regulatory function in the eukaryotic cell cycle, cyclin-dependent kinases (CDKs) are prominent drug targets. The Eimeria tenella CDC2-related kinase 2 (EtCRK2) is a validated drug target that can be activated in vitro by the CDK activator XlRINGO (Xenopus laevis rapid inducer of G2/M progression in oocytes). Bioinformatics analyses revealed four putative E. tenella cyclins (EtCYCs) that are closely related to cyclins found in the human apicomplexan parasite Plasmodium falciparum. EtCYC3a was cloned, expressed in Escherichia coli and purified in a complex with EtCRK2. Using the non-radioactive time-resolved fluorescence energy transfer (TR-FRET) assay, we demonstrated the ability of EtCYC3a to activate EtCRK2 as shown previously for XlRINGO. The EtCRK2/EtCYC3a complex was used for a combined in vitro and in silico high-throughput screening approach, which resulted in three lead structures, a naphthoquinone, an 8-hydroxyquinoline and a 2-pyrimidinyl-aminopiperidine-propane-2-ol. This constitutes a promising starting point for the subsequent lead optimization phase and the development of novel anticoccidial drugs. Society for General Microbiology 2012-09 /pmc/articles/PMC3542813/ /pubmed/22723289 http://dx.doi.org/10.1099/mic.0.059428-0 Text en © 2012 SGM http://creativecommons.org/licenses/by/2.5/ 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 work is properly cited.
spellingShingle Cell and Molecular Biology of Microbes
Fernández, María L. Suárez
Engels, Kristin K.
Bender, Frank
Gassel, Michael
Marhöfer, Richard J.
Mottram, Jeremy C.
Selzer, Paul M.
High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title_full High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title_fullStr High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title_full_unstemmed High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title_short High-throughput screening with the Eimeria tenella CDC2-related kinase2/cyclin complex EtCRK2/EtCYC3a
title_sort high-throughput screening with the eimeria tenella cdc2-related kinase2/cyclin complex etcrk2/etcyc3a
topic Cell and Molecular Biology of Microbes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3542813/
https://www.ncbi.nlm.nih.gov/pubmed/22723289
http://dx.doi.org/10.1099/mic.0.059428-0
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