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Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion

Apicomplexan parasites critically depend on a unique form of gliding motility to colonize their hosts and to invade cells. Gliding requires different stage and species-specific transmembrane adhesins, which interact with an intracellular motor complex shared across parasite stages and species. How g...

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Autores principales: Siden-Kiamos, Inga, Ecker, Andrea, Nybäck, Saga, Louis, Christos, Sinden, Robert E, Billker, Oliver
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2006
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1513514/
https://www.ncbi.nlm.nih.gov/pubmed/16796674
http://dx.doi.org/10.1111/j.1365-2958.2006.05189.x
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author Siden-Kiamos, Inga
Ecker, Andrea
Nybäck, Saga
Louis, Christos
Sinden, Robert E
Billker, Oliver
author_facet Siden-Kiamos, Inga
Ecker, Andrea
Nybäck, Saga
Louis, Christos
Sinden, Robert E
Billker, Oliver
author_sort Siden-Kiamos, Inga
collection PubMed
description Apicomplexan parasites critically depend on a unique form of gliding motility to colonize their hosts and to invade cells. Gliding requires different stage and species-specific transmembrane adhesins, which interact with an intracellular motor complex shared across parasite stages and species. How gliding is regulated by extracellular factors and intracellular signalling mechanisms is largely unknown, but current evidence suggests an important role for cytosolic calcium as a second messenger. Studying a Plasmodium berghei gene deletion mutant, we here provide evidence that a calcium-dependent protein kinase, CDPK3, has an important function in regulating motility of the ookinete in the mosquito midgut. We show that a cdpk3(–) parasite clone produces morphologically normal ookinetes, which fail to engage the midgut epithelium, due to a marked reduction in their ability to glide productively, resulting in marked reduction in malaria transmission to the mosquito. The mutant was successfully complemented with an episomally maintained cdpk3 gene, restoring mosquito transmission to wild-type level. cdpk3(–) ookinetes maintain their full genetic differentiation potential when microinjected into the mosquito haemocoel and cdpk3(–) sporozoites produced in this way are motile and infectious, suggesting an ookinete-limited essential function for CDPK3.
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spelling pubmed-15135142006-07-24 Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion Siden-Kiamos, Inga Ecker, Andrea Nybäck, Saga Louis, Christos Sinden, Robert E Billker, Oliver Mol Microbiol Research Articles Apicomplexan parasites critically depend on a unique form of gliding motility to colonize their hosts and to invade cells. Gliding requires different stage and species-specific transmembrane adhesins, which interact with an intracellular motor complex shared across parasite stages and species. How gliding is regulated by extracellular factors and intracellular signalling mechanisms is largely unknown, but current evidence suggests an important role for cytosolic calcium as a second messenger. Studying a Plasmodium berghei gene deletion mutant, we here provide evidence that a calcium-dependent protein kinase, CDPK3, has an important function in regulating motility of the ookinete in the mosquito midgut. We show that a cdpk3(–) parasite clone produces morphologically normal ookinetes, which fail to engage the midgut epithelium, due to a marked reduction in their ability to glide productively, resulting in marked reduction in malaria transmission to the mosquito. The mutant was successfully complemented with an episomally maintained cdpk3 gene, restoring mosquito transmission to wild-type level. cdpk3(–) ookinetes maintain their full genetic differentiation potential when microinjected into the mosquito haemocoel and cdpk3(–) sporozoites produced in this way are motile and infectious, suggesting an ookinete-limited essential function for CDPK3. Blackwell Publishing Ltd 2006-06 /pmc/articles/PMC1513514/ /pubmed/16796674 http://dx.doi.org/10.1111/j.1365-2958.2006.05189.x Text en © 2006 The Authors; Journal compilation © 2006 Blackwell Publishing Ltd
spellingShingle Research Articles
Siden-Kiamos, Inga
Ecker, Andrea
Nybäck, Saga
Louis, Christos
Sinden, Robert E
Billker, Oliver
Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title_full Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title_fullStr Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title_full_unstemmed Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title_short Plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
title_sort plasmodium berghei calcium-dependent protein kinase 3 is required for ookinete gliding motility and mosquito midgut invasion
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1513514/
https://www.ncbi.nlm.nih.gov/pubmed/16796674
http://dx.doi.org/10.1111/j.1365-2958.2006.05189.x
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