MITOCHONDRIAL DYSFUNCTION IN NNAD MUTANT FLIES AND PURKINJE CELL DEGENERATION
MITOCHONDRIAL DYSFUNCTION IN NNAD MUTANT FLIES AND PURKINJE CELL DEGENERATION
批准号:
8365864
负责人:
ALBERT R LA SPADA
金额:
$0.65万
依托单位:
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:
2011-09-01 至 2012-06-30
关键词:
BioenergeticsBiologyCarboxypeptidaseCell DeathCerebellumDiseaseDrosophila genusEnzymesFundingFungal GenomeGrantMitochondriaModelingMusNational Center for Research ResourcesNerve DegenerationNeurodegenerative DisordersNeuronsOxidative PhosphorylationParkinson DiseasePhenotypePrincipal InvestigatorProteinsProteolytic ProcessingProteomicsPurkinje CellsResearchResearch InfrastructureResourcesRetinaSourceSurvivorsUnited States National Institutes of HealthZincbasecostflyloss of functionmitochondrial dysfunctionmutant
中文摘要
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英文摘要
This subproject is one of many research subprojects utilizing the resources
provided by a Center grant funded by NIH/NCRR. Primary support for the subproject
and the subproject's principal investigator may have been provided by other sources,
including other NIH sources. The Total Cost listed for the subproject likely
represents the estimated amount of Center infrastructure utilized by the subproject,
not direct funding provided by the NCRR grant to the subproject or subproject staff.
The Purkinje cell degeneration (pcd) mouse is a recessive model of neurodegeneration, involving cerebellum and retina. Purkinje cell death in pcd is dramatic, as >99% of Purkinje neurons are lost in three weeks. Loss-of-function of Nna1 causes pcd, and Nna1 is a highly conserved zinc carboxypeptidase. To determine the basis of pcd, we implemented a two pronged approach, combining characterization of loss-of-function phenotypes of the Drosophila Nna1 orthologue (NnaD) with proteomics analysis of pcd mice. Reduced NnaD function yielded larval lethality, with survivors displaying phenotypes that mirror disease in pcd. Quantitative proteomics revealed expression alterations for glycolytic and oxidative phosphorylation enzymes. Nna proteins localize to mitochondria, loss of NnaD / Nna1 produces mitochondrial abnormalities, and pcd mice display altered proteolytic processing of Nna1 interacting proteins. Our studies indicate that Nna1 loss-of-function results in altered bioenergetics and mitochondrial dysfunction, and suggest that pcd shares pathogenic features with neurodegenerative disorders such as Parkinson's disease.
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