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A novel multiple-stage antimalarial agent that inhibits protein synthesis
There is an urgent need for new drugs to treat malaria, with broad therapeutic potential and novel modes of action, to widen the scope of treatment and to overcome emerging drug resistance. We describe the discovery of DDD107498, a compound with a potent and novel spectrum of antimalarial activity a...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2015
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4700930/ https://www.ncbi.nlm.nih.gov/pubmed/26085270 http://dx.doi.org/10.1038/nature14451 |
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author | Baragaña, Beatriz Hallyburton, Irene Lee, Marcus C. S. Norcross, Neil R. Grimaldi, Raffaella Otto, Thomas D. Proto, William R. Blagborough, Andrew M. Meister, Stephan Wirjanata, Grennady Ruecker, Andrea Upton, Leanna M. Abraham, Tara S. Almeida, Mariana J. Pradhan, Anupam Porzelle, Achim Martínez, María Santos Bolscher, Judith M. Woodland, Andrew Norval, Suzanne Zuccotto, Fabio Thomas, John Simeons, Frederick Stojanovski, Laste Osuna-Cabello, Maria Brock, Paddy M. Churcher, Tom S. Sala, Katarzyna A. Zakutansky, Sara E. Jiménez-Díaz, María Belén Sanz, Laura Maria Riley, Jennifer Basak, Rajshekhar Campbell, Michael Avery, Vicky M. Sauerwein, Robert W Dechering, Koen J. Noviyanti, Rintis Campo, Brice Frearson, Julie A. Angulo-Barturen, Iñigo Ferrer-Bazaga, Santiago Gamo, Francisco Javier Wyatt, Paul G. Leroy, Didier Siegl, Peter Delves, Michael J. Kyle, Dennis E. Wittlin, Sergio Marfurt, Jutta Price, Ric N. Sinden, Robert E. Winzeler, Elizabeth Charman, Susan A. Bebrevska, Lidiya Gray, David W. Campbell, Simon Fairlamb, Alan H. Willis, Paul Rayner, Julian C. Fidock, David A. Read, Kevin D. Gilbert, Ian H. |
author_facet | Baragaña, Beatriz Hallyburton, Irene Lee, Marcus C. S. Norcross, Neil R. Grimaldi, Raffaella Otto, Thomas D. Proto, William R. Blagborough, Andrew M. Meister, Stephan Wirjanata, Grennady Ruecker, Andrea Upton, Leanna M. Abraham, Tara S. Almeida, Mariana J. Pradhan, Anupam Porzelle, Achim Martínez, María Santos Bolscher, Judith M. Woodland, Andrew Norval, Suzanne Zuccotto, Fabio Thomas, John Simeons, Frederick Stojanovski, Laste Osuna-Cabello, Maria Brock, Paddy M. Churcher, Tom S. Sala, Katarzyna A. Zakutansky, Sara E. Jiménez-Díaz, María Belén Sanz, Laura Maria Riley, Jennifer Basak, Rajshekhar Campbell, Michael Avery, Vicky M. Sauerwein, Robert W Dechering, Koen J. Noviyanti, Rintis Campo, Brice Frearson, Julie A. Angulo-Barturen, Iñigo Ferrer-Bazaga, Santiago Gamo, Francisco Javier Wyatt, Paul G. Leroy, Didier Siegl, Peter Delves, Michael J. Kyle, Dennis E. Wittlin, Sergio Marfurt, Jutta Price, Ric N. Sinden, Robert E. Winzeler, Elizabeth Charman, Susan A. Bebrevska, Lidiya Gray, David W. Campbell, Simon Fairlamb, Alan H. Willis, Paul Rayner, Julian C. Fidock, David A. Read, Kevin D. Gilbert, Ian H. |
author_sort | Baragaña, Beatriz |
collection | PubMed |
description | There is an urgent need for new drugs to treat malaria, with broad therapeutic potential and novel modes of action, to widen the scope of treatment and to overcome emerging drug resistance. We describe the discovery of DDD107498, a compound with a potent and novel spectrum of antimalarial activity against multiple life-cycle stages of the parasite, with good pharmacokinetic properties, and an acceptable safety profile. DDD107498 demonstrates potential to address a variety of clinical needs, including single dose treatment, transmission blocking and chemoprotection. DDD107498 was developed from a screening programme against blood stage malaria parasites; its molecular target has been identified as translation elongation factor 2 (eEF2), which is responsible for the GTP-dependent translocation of the ribosome along mRNA, and is essential for protein synthesis. This discovery of eEF2 as a viable antimalarial drug target opens up new possibilities for drug discovery. |
format | Online Article Text |
id | pubmed-4700930 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2015 |
record_format | MEDLINE/PubMed |
spelling | pubmed-47009302016-01-05 A novel multiple-stage antimalarial agent that inhibits protein synthesis Baragaña, Beatriz Hallyburton, Irene Lee, Marcus C. S. Norcross, Neil R. Grimaldi, Raffaella Otto, Thomas D. Proto, William R. Blagborough, Andrew M. Meister, Stephan Wirjanata, Grennady Ruecker, Andrea Upton, Leanna M. Abraham, Tara S. Almeida, Mariana J. Pradhan, Anupam Porzelle, Achim Martínez, María Santos Bolscher, Judith M. Woodland, Andrew Norval, Suzanne Zuccotto, Fabio Thomas, John Simeons, Frederick Stojanovski, Laste Osuna-Cabello, Maria Brock, Paddy M. Churcher, Tom S. Sala, Katarzyna A. Zakutansky, Sara E. Jiménez-Díaz, María Belén Sanz, Laura Maria Riley, Jennifer Basak, Rajshekhar Campbell, Michael Avery, Vicky M. Sauerwein, Robert W Dechering, Koen J. Noviyanti, Rintis Campo, Brice Frearson, Julie A. Angulo-Barturen, Iñigo Ferrer-Bazaga, Santiago Gamo, Francisco Javier Wyatt, Paul G. Leroy, Didier Siegl, Peter Delves, Michael J. Kyle, Dennis E. Wittlin, Sergio Marfurt, Jutta Price, Ric N. Sinden, Robert E. Winzeler, Elizabeth Charman, Susan A. Bebrevska, Lidiya Gray, David W. Campbell, Simon Fairlamb, Alan H. Willis, Paul Rayner, Julian C. Fidock, David A. Read, Kevin D. Gilbert, Ian H. Nature Article There is an urgent need for new drugs to treat malaria, with broad therapeutic potential and novel modes of action, to widen the scope of treatment and to overcome emerging drug resistance. We describe the discovery of DDD107498, a compound with a potent and novel spectrum of antimalarial activity against multiple life-cycle stages of the parasite, with good pharmacokinetic properties, and an acceptable safety profile. DDD107498 demonstrates potential to address a variety of clinical needs, including single dose treatment, transmission blocking and chemoprotection. DDD107498 was developed from a screening programme against blood stage malaria parasites; its molecular target has been identified as translation elongation factor 2 (eEF2), which is responsible for the GTP-dependent translocation of the ribosome along mRNA, and is essential for protein synthesis. This discovery of eEF2 as a viable antimalarial drug target opens up new possibilities for drug discovery. 2015-06-18 /pmc/articles/PMC4700930/ /pubmed/26085270 http://dx.doi.org/10.1038/nature14451 Text en Reprints and permissions information is available at npg.nature.com/reprintsandpermissions (http://npg.nature.com/reprintsandpermissions) . |
spellingShingle | Article Baragaña, Beatriz Hallyburton, Irene Lee, Marcus C. S. Norcross, Neil R. Grimaldi, Raffaella Otto, Thomas D. Proto, William R. Blagborough, Andrew M. Meister, Stephan Wirjanata, Grennady Ruecker, Andrea Upton, Leanna M. Abraham, Tara S. Almeida, Mariana J. Pradhan, Anupam Porzelle, Achim Martínez, María Santos Bolscher, Judith M. Woodland, Andrew Norval, Suzanne Zuccotto, Fabio Thomas, John Simeons, Frederick Stojanovski, Laste Osuna-Cabello, Maria Brock, Paddy M. Churcher, Tom S. Sala, Katarzyna A. Zakutansky, Sara E. Jiménez-Díaz, María Belén Sanz, Laura Maria Riley, Jennifer Basak, Rajshekhar Campbell, Michael Avery, Vicky M. Sauerwein, Robert W Dechering, Koen J. Noviyanti, Rintis Campo, Brice Frearson, Julie A. Angulo-Barturen, Iñigo Ferrer-Bazaga, Santiago Gamo, Francisco Javier Wyatt, Paul G. Leroy, Didier Siegl, Peter Delves, Michael J. Kyle, Dennis E. Wittlin, Sergio Marfurt, Jutta Price, Ric N. Sinden, Robert E. Winzeler, Elizabeth Charman, Susan A. Bebrevska, Lidiya Gray, David W. Campbell, Simon Fairlamb, Alan H. Willis, Paul Rayner, Julian C. Fidock, David A. Read, Kevin D. Gilbert, Ian H. A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title | A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title_full | A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title_fullStr | A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title_full_unstemmed | A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title_short | A novel multiple-stage antimalarial agent that inhibits protein synthesis |
title_sort | novel multiple-stage antimalarial agent that inhibits protein synthesis |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4700930/ https://www.ncbi.nlm.nih.gov/pubmed/26085270 http://dx.doi.org/10.1038/nature14451 |
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