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dc.identifier.urihttp://hdl.handle.net/11401/76918
dc.description.sponsorshipThis work is sponsored by the Stony Brook University Graduate School in compliance with the requirements for completion of degree.en_US
dc.formatMonograph
dc.format.mediumElectronic Resourceen_US
dc.language.isoen_US
dc.publisherThe Graduate School, Stony Brook University: Stony Brook, NY.
dc.typeDissertation
dcterms.abstractVps34 is the sole member of the Class III phosphoinositide 3-kinases (PI3Ks) identified in mammals thus far. It phosphorylates phosphatidylinositol (PI) to generate PI(3)P on intracellular membranes. Previous work has suggested that Vps34 is important for the protein degradation pathways of autophagy and endocytosis, as well as nutrient-induced mTOR signaling. However, due to the pluripotent nature of available PI3K inhibitors, a clear understanding of the functions of mammalian Vps34 remains to be illustrated. To investigate the precise role of Vps34 in these processes, I have generated and characterized mice with conditional genetic ablation of Vps34. Mice with liver or heart-specific deletion of Vps34 suffer from organ enlargement, excess lipid accumulation and organ dysfunction. Mice and embryonic fibroblasts (MEFs) lacking Vps34 are completely deficient in autophagy and instead accumulate intracellular aggregates. Vps34-deficient MEFs display a growth defect and dramatically reduced amino acid-induced mTOR signaling. In addition, while it is widely believed that Vps34 controls the early stages of endocytosis, I find that early endosome functions such as transferrin recycling and EEA1 recruitment are not affected by Vps34 knockout. This is attributed to a compensatory increase of Rab5-GTP which is sufficient to support these early endosome functions. Furthermore, I find that Vps34 is essential for late endocytic functions like cargo degradation and endosome morphology. Interestingly, the deletion of Vps34 leads to a dramatic increase in Rab7-GTP levels. In the absence of Vps34, the Rab7 GTPase activating protein Armus, which limits Rab7 activity, loses its correct intracellular localization. Increased Rab7-GTP levels in Vps34 knockout cells translate to increased effector RILP recruitment, which may enhance v-ATPase activity and cause intracellular vacuolization as well as failure of endosome-lysosome fusion. These results solidify our understanding of the role of mammalian Vps34 in autophagy and uncover a previously unappreciated role for Vps34 in maintaining late endosome functions via the regulation of Rab7.
dcterms.available2017-09-20T16:51:26Z
dcterms.contributorZong, We-xingen_US
dcterms.contributorBrown, Deborahen_US
dcterms.contributorLin, Richarden_US
dcterms.contributorCzaplinski, Kevinen_US
dcterms.contributorYue, Zhenyu.en_US
dcterms.creatorJaber, Nadia
dcterms.dateAccepted2017-09-20T16:51:26Z
dcterms.dateSubmitted2017-09-20T16:51:26Z
dcterms.descriptionDepartment of Biochemistry and Cell Biology.en_US
dcterms.extent115 pg.en_US
dcterms.formatMonograph
dcterms.formatApplication/PDFen_US
dcterms.identifierhttp://hdl.handle.net/11401/76918
dcterms.issued2015-12-01
dcterms.languageen_US
dcterms.provenanceMade available in DSpace on 2017-09-20T16:51:26Z (GMT). No. of bitstreams: 1 Jaber_grad.sunysb_0771E_12431.pdf: 2466328 bytes, checksum: 17b389c587295aa3a646e2aeb7b6185a (MD5) Previous issue date: 1en
dcterms.publisherThe Graduate School, Stony Brook University: Stony Brook, NY.
dcterms.subjectMolecular biology
dcterms.subjectautophagy, endocytosis, mTOR, PI 3-kinase, Rab7, Vps34
dcterms.titleClass III phosphoinositide 3-kinase Vps34 in autophagy, endocytosis, and nutrient-induced signaling
dcterms.typeDissertation


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