The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii.
Up-regulation of the membrane-bound efflux pump P-glycoprotein (P-gp) is associated with the phenomenon of multidrug-resistance in pathogenic organisms, including protozoan parasites. In addition, P-gp plays a role in normal physiological processes, however our understanding of these P-gp functions...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2010-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC2851653?pdf=render |
id |
doaj-55f5b559a38e4753b13797db77ea54b8 |
---|---|
record_format |
Article |
spelling |
doaj-55f5b559a38e4753b13797db77ea54b82020-11-25T01:58:13ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0154e1006210.1371/journal.pone.0010062The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii.Iveta BottovaUrsula SauderVesna OlivieriAdrian B HehlSabrina SondaUp-regulation of the membrane-bound efflux pump P-glycoprotein (P-gp) is associated with the phenomenon of multidrug-resistance in pathogenic organisms, including protozoan parasites. In addition, P-gp plays a role in normal physiological processes, however our understanding of these P-gp functions remains limited. In this study we investigated the effects of the P-gp inhibitor GF120918 in Toxoplasma gondii, a model apicomplexan parasite and an important human pathogen. We found that GF120918 treatment severely inhibited parasite invasion and replication. Further analyses of the molecular mechanisms involved revealed that the P-gp inhibitor modulated parasite motility, microneme secretion and egress from the host cell, all cellular processes known to depend on Ca2+ signaling in the parasite. In support of a potential role of P-gp in Ca2+-mediated processes, immunoelectron and fluorescence microscopy showed that T. gondii P-gp was localized in acidocalcisomes, the major Ca2+ storage in the parasite, at the plasma membrane, and in the intravacuolar tubular network. In addition, metabolic labeling of extracellular parasites revealed that inhibition or down-regulation of T. gondii P-gp resulted in aberrant lipid synthesis. These results suggest a crucial role of T. gondii P-gp in essential processes of the parasite biology and further validate the potential of P-gp activity as a target for drug development.http://europepmc.org/articles/PMC2851653?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Iveta Bottova Ursula Sauder Vesna Olivieri Adrian B Hehl Sabrina Sonda |
spellingShingle |
Iveta Bottova Ursula Sauder Vesna Olivieri Adrian B Hehl Sabrina Sonda The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. PLoS ONE |
author_facet |
Iveta Bottova Ursula Sauder Vesna Olivieri Adrian B Hehl Sabrina Sonda |
author_sort |
Iveta Bottova |
title |
The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. |
title_short |
The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. |
title_full |
The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. |
title_fullStr |
The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. |
title_full_unstemmed |
The P-glycoprotein inhibitor GF120918 modulates Ca2+-dependent processes and lipid metabolism in Toxoplasma gondii. |
title_sort |
p-glycoprotein inhibitor gf120918 modulates ca2+-dependent processes and lipid metabolism in toxoplasma gondii. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2010-01-01 |
description |
Up-regulation of the membrane-bound efflux pump P-glycoprotein (P-gp) is associated with the phenomenon of multidrug-resistance in pathogenic organisms, including protozoan parasites. In addition, P-gp plays a role in normal physiological processes, however our understanding of these P-gp functions remains limited. In this study we investigated the effects of the P-gp inhibitor GF120918 in Toxoplasma gondii, a model apicomplexan parasite and an important human pathogen. We found that GF120918 treatment severely inhibited parasite invasion and replication. Further analyses of the molecular mechanisms involved revealed that the P-gp inhibitor modulated parasite motility, microneme secretion and egress from the host cell, all cellular processes known to depend on Ca2+ signaling in the parasite. In support of a potential role of P-gp in Ca2+-mediated processes, immunoelectron and fluorescence microscopy showed that T. gondii P-gp was localized in acidocalcisomes, the major Ca2+ storage in the parasite, at the plasma membrane, and in the intravacuolar tubular network. In addition, metabolic labeling of extracellular parasites revealed that inhibition or down-regulation of T. gondii P-gp resulted in aberrant lipid synthesis. These results suggest a crucial role of T. gondii P-gp in essential processes of the parasite biology and further validate the potential of P-gp activity as a target for drug development. |
url |
http://europepmc.org/articles/PMC2851653?pdf=render |
work_keys_str_mv |
AT ivetabottova thepglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT ursulasauder thepglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT vesnaolivieri thepglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT adrianbhehl thepglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT sabrinasonda thepglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT ivetabottova pglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT ursulasauder pglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT vesnaolivieri pglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT adrianbhehl pglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii AT sabrinasonda pglycoproteininhibitorgf120918modulatesca2dependentprocessesandlipidmetabolismintoxoplasmagondii |
_version_ |
1724970798160019456 |