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dc.contributor.authorIlic, Nina
dc.contributor.authorBirsoy, Kıvanç
dc.contributor.authorAguirre, Andrew J.
dc.contributor.authorSingh, Shambhavi
dc.contributor.authorMoody, Susan E.
dc.contributor.authorDeAngelo, Joseph D.
dc.contributor.authorSpardy, Nicole A.
dc.contributor.authorFreinkman, Elizaveta
dc.contributor.authorWeir, Barbara A.
dc.contributor.authorTsherniak, Aviad
dc.contributor.authorCowley, Glenn S.
dc.contributor.authorRoot, David E.
dc.contributor.authorAsara, John M.
dc.contributor.authorVazquez, Francisca
dc.contributor.authorWidlund, Hans R.
dc.contributor.authorHahn, William C.
dc.contributor.authorKory, Nora
dc.contributor.authorSabatini, David
dc.contributor.authorPacold, Michael Edward
dc.date.accessioned2017-12-22T20:26:06Z
dc.date.available2017-12-22T20:26:06Z
dc.date.issued2017-04
dc.date.submitted2016-10
dc.identifier.issn0027-8424
dc.identifier.issn1091-6490
dc.identifier.urihttp://hdl.handle.net/1721.1/112943
dc.description.abstractOncogenic PIK3CA mutations are found in a significant fraction of human cancers, but therapeutic inhibition of PI3K has only shown limited success in clinical trials. To understand how mutant PIK3CA contributes to cancer cell proliferation, we used genome scale loss-of-function screening in a large number of genomically annotated cancer cell lines. As expected, we found that PIK3CA mutant cancer cells require PIK3CA but also require the expression of the TCA cycle enzyme 2-oxoglutarate dehydrogenase (OGDH). To understand the relationship between oncogenic PIK3CA and OGDH function, we interrogated metabolic requirements and found an increased reliance on glucose metabolism to sustain PIK3CA mutant cell proliferation. Functional metabolic studies revealed that OGDH suppression increased levels of the metabolite 2-oxoglutarate (2OG). We found that this increase in 2OG levels, either by OGDH suppression or exogenous 2OG treatment, resulted in aspartate depletion that was specifically manifested as auxotrophy within PIK3CA mutant cells. Reduced levels of aspartate deregulated the malate-aspartate shuttle, which is important for cytoplasmic NAD + regeneration that sustains rapid glucose breakdown through glycolysis. Consequently, because PIK3CA mutant cells exhibit a profound reliance on glucose metabolism, malate-aspartate shuttle deregulation leads to a specific proliferative block due to the inability to maintain NAD + /NADH homeostasis. Together these observations define a precise metabolic vulnerability imposed by a recurrently mutated oncogene. Keyword: PIK3CA; 2OG; OGDH; TCA cycle; glycolysisen_US
dc.description.sponsorshipDamon Runyon Cancer Research Foundation (HHMI Fellowship)en_US
dc.publisherProceedings of the National Academy of Sciencesen_US
dc.relation.isversionofhttp://dx.doi.org/10.1073/PNAS.1617922114en_US
dc.rightsArticle is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.en_US
dc.sourcePNASen_US
dc.titlePIK3CA mutant tumors depend on oxoglutarate dehydrogenaseen_US
dc.typeArticleen_US
dc.identifier.citationIlic, Nina, et al. “PIK3CA Mutant Tumors Depend on Oxoglutarate Dehydrogenase.” Proceedings of the National Academy of Sciences, vol. 114, no. 17, Apr. 2017, pp. E3434–43. © 2017 National Academy of Sciencesen_US
dc.contributor.departmentMassachusetts Institute of Technology. Department of Biologyen_US
dc.contributor.departmentWhitehead Institute for Biomedical Researchen_US
dc.contributor.departmentKoch Institute for Integrative Cancer Research at MITen_US
dc.contributor.mitauthorKory, Nora
dc.contributor.mitauthorPacold, Michael E
dc.contributor.mitauthorSabatini, David
dc.relation.journalProceedings of the National Academy of Sciencesen_US
dc.eprint.versionFinal published versionen_US
dc.type.urihttp://purl.org/eprint/type/JournalArticleen_US
eprint.statushttp://purl.org/eprint/status/PeerRevieweden_US
dc.date.updated2017-12-22T17:25:15Z
dspace.orderedauthorsIlic, Nina; Birsoy, Kıvanç; Aguirre, Andrew J.; Kory, Nora; Pacold, Michael E.; Singh, Shambhavi; Moody, Susan E.; DeAngelo, Joseph D.; Spardy, Nicole A.; Freinkman, Elizaveta; Weir, Barbara A.; Tsherniak, Aviad; Cowley, Glenn S.; Root, David E.; Asara, John M.; Vazquez, Francisca; Widlund, Hans R.; Sabatini, David M.; Hahn, William C.en_US
dspace.embargo.termsNen_US
dc.identifier.orcidhttps://orcid.org/0000-0003-3688-2378
dc.identifier.orcidhttps://orcid.org/0000-0002-1446-7256
mit.licensePUBLISHER_POLICYen_US
mit.metadata.statusComplete


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