Structural Analysis of the GPI Transamidase Complex
Structural Analysis of the GPI Transamidase Complex
批准号:
8267601
负责人:
ANANT K MENON
金额:
$21.13万
依托单位国家:
美国
项目类别:
财政年份:
2011
资助国家:
美国
项目状态:
已结题
起止时间:
2011-06-01 至 2013-05-31
关键词:
AbbreviationsAcetylcholinesteraseAfrican TrypanosomiasisAlkaline PhosphataseAmino AcidsAnabolismArchitectureAreaBindingBiochemistryBiologicalBiological AssayBiologyCOOH-terminal signal transamidaseCanis familiarisCaspaseCatalytic DomainCell Adhesion MoleculesCell SurvivalCell surfaceCellular biologyCleaved cellComplexCysteine ProteaseDefectDiseaseDrug Delivery SystemsElectron MicroscopyEmbryoEndoplasmic ReticulumEnzymesEpitopesEukaryotaFamilyFutureGPI Membrane AnchorsGlycosylphosphatidylinositolsGlypicanHematopoieticHumanLaboratoriesLearningLeishmaniasisLightLinkLocationMalariaMalignant NeoplasmsMammalsMannoseMapsMembraneMembrane GlycoproteinsMembrane ProteinsMultienzyme ComplexesNCAM1 genePI-GlycanPathway interactionsPeptide Signal SequencesPhosphatidylinositolsPlayPrionsProcessProtein SubunitsProteinsProtozoaRecruitment ActivityReportingResolutionRoentgen RaysRoleStructureTrypanosoma brucei bruceiTrypanosomiasisUniversitiesVariantWorkX-Ray CrystallographyYeastsdesigndolichyl-diphosphooligosaccharide - protein glycotransferaseenzyme structureexperiencefolate-binding proteinglycosylationhuman stem cellsinhibitor/antagonistinsightinterestmanmembrane dipeptidasepathogenphosphoethanolamineprotein complexprotein structurerat Piga proteinreconstitutionsignal peptidasestructural biologytooltransamidasestumorigenesis
中文摘要
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英文摘要
DESCRIPTION (provided by applicant): Glycosylphosphatidylinositol (GPI)-anchored proteins (GPI-APs) are ubiquitous in eukaryotes. Examples of GPI-APs include folate receptor, acetylcholinesterase, renal dipeptidase and the variant surface glycoproteins of Trypanosoma brucei, the causative agent of African sleeping sickness. Inability to synthesize GPI-APs results in embryonic lethality in mammals. Defective GPI biosynthesis in multipotent hematopoietic human stem cells causes paroxysmal nocturnal hemoglobinuria, an acquired hemolytic disease. GPI-APs are needed for fungal cell viability and they are important in diseases such as trypanosomiasis, malaria and leishmaniasis that are caused by parasitic protozoa. The GPI assembly pathway is a drug target for fungal and protozoal diseases. GPI anchoring is catalyzed by GPI transamidase (GPIT), a 5-subunit membrane- bound complex located in the endoplasmic reticulum (ER). The catalytic subunit, Gpi8, shares homology with caspases; the functional role of the other subunits is unclear, but all are required for GPIT activity. Three of the non-catalytic subunits are over-expressed in certain cancers, indicating a link between GPIT and oncogenesis. In this R21 application we propose to initiate structure-function studies of the GPIT complex using electron microscopy and X-ray crystallography. We are ultimately interested in establishing the structural organization of GPIT, delineating the role of its subunits, and understanding how this important enzyme is regulated. In two specific aims we propose to (1) analyze the endogenous GPIT complex from yeast by electron microscopy and (2) express GPIT subunits and sub-complexes for X-ray crystallographic studies. Our efforts are expected to yield a medium-resolution structure of GPIT and pave the way for a future high-resolution structure of the intact complex. These studies will have high impact as there is no structural information on GPIT; also, results obtained here will shed light on other multi-subunit membrane bound enzymes in the ER such as oligosaccharyltransferase and signal peptidase that play a critical role in processing a wide range of ER-translocated proteins, including proteins destined for GPI anchoring, but whose functional architecture remains largely a mystery.
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会议论文
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海外基金