Elucidating ligand-receptor interactions required for Plasmodium vivax blood-stage infection
Elucidating ligand-receptor interactions required for Plasmodium vivax blood-stage infection
批准号:
10189498
负责人:
Manoj T Duraisingh
金额:
$39.88万
依托单位国家:
美国
项目类别:
财政年份:
2018
资助国家:
美国
项目状态:
已结题
起止时间:
2018-07-01 至 2023-06-30
关键词:
Acute Erythroblastic LeukemiaAffectAfricaAntigen ReceptorsAttentionBindingBinding ProteinsBiochemicalBiological AssayBiologyBloodCell Culture SystemCell LineCell Membrane ProteinsCell Surface ReceptorsCell surfaceCellsClinicalDevelopmentDiseaseErythrocytesFamilyFutureGeneticGenetic ScreeningGenomeGrowthHumanImmunologicsIn VitroIndividualInfectionInvadedKnock-outKnowledgeLaboratoriesLibrariesLigand BindingLigandsLiverMalariaMediatingMembrane ProteinsMolecularMorbidity - disease rateParasitesPathway interactionsPenetrancePhenotypePlasmodiumPlasmodium falciparumPlasmodium vivaxPlayPopulationPositioning AttributeProcessProteinsProteomicsPublic HealthReceptor CellRecombinantsReportingResearchResistanceReticulocytesSourceSystemTFRC geneTherapeuticTropismbasechemokine receptordesignhuman diseaseinfection riskknock-downknockout genelaboratory developmentmembermutantnovelnovel therapeuticsparasite invasionpathogenreceptorscreeningtargeted treatmentvaccine development
中文摘要
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英文摘要
Project Summary
Plasmodium vivax is the most widely distributed of all of the malaria parasites that cause human disease, and is
a source of considerable morbidity, and a major challenge for eradication, due to long-term persistence of
asymptomatic hypnozoites in the liver. The biology of P. vivax infections is poorly understood, in large part due
to the absence of a system for continuous in vitro culture. P. vivax strikingly invade only reticulocytes during
blood-stage infections, the youngest of red blood cells. The molecular mechanisms by which P. vivax invade
reticulocytes remain largely unknown. Previous research has focused on a single molecular interaction between
a P. vivax invasion ligand PvDBP and the host DARC receptor, but it is now known that invasion can occur
through pathways independent of DARC. We hypothesize that other members of the EBL and RBL families of
invasion ligands are likely to play a key role in binding to specific reticulocyte receptors to mediate successful
invasion. In this proposal, we build upon two major advances in our laboratory- the ability to generate gene
knockouts in red blood cells, and the ability to perform robust in vitro invasion assays with P. vivax. Using these
approaches, we have identified TfR1 as the receptor for the RBL protein PvRBP2b. We will now 1) conduct a
genetic knockout screen of red blood cell membrane proteins to comprehensively identify all of the reticulocyte
membrane proteins that are required for P. vivax invasion, and 2) identify key parasite ligands that bind to their
cognate red blood cell receptors, by interrogating candidate members of the EBL and RBL families in P. vivax,
as well as conducting an unbiased screen of P. vivax merozoite proteins. Together, these studies will serve to
dramatically increase our understanding of the molecular interactions between P. vivax and its host red blood
cell. In the long-term we hope that our studies will provide a functional understanding of the essential ligand-
receptor interactions required for P. vivax invasion, and inform vaccine development and the design of host-
targeted therapeutics.
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会议论文
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资助金额:$39.88万
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Functional analysis of epigenetic regulators of malaria blood-stage proliferation and transmission
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依托单位:
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Genetic screens for erythrocyte determinants of protein trafficking in malaria parasites
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依托单位:
海外基金