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dc.contributor.authorGupta, Amit
dc.contributor.authorAnjomani-Virmouni, Sara
dc.contributor.authorKoundouros, Nikos
dc.contributor.authorDimitriadi, Maria
dc.contributor.authorChoo-Wing, Rayman
dc.contributor.authorValle, Adamo
dc.contributor.authorZheng, Yuxiang
dc.contributor.authorChiu, Yu-Hsin
dc.contributor.authorAgnihotri, Sameer
dc.contributor.authorZadeh, Gelareh
dc.contributor.authorAsara, John M
dc.contributor.authorAnastasiou, Dimitrios
dc.contributor.authorArends, Mark J
dc.contributor.authorCantley, Lewis C
dc.contributor.authorPoulogiannis, George
dc.date.accessioned2017-06-01T15:46:29Z
dc.date.available2017-06-01T15:46:29Z
dc.date.issued2017-03-16
dc.identifier.citationGupta , A , Anjomani-Virmouni , S , Koundouros , N , Dimitriadi , M , Choo-Wing , R , Valle , A , Zheng , Y , Chiu , Y-H , Agnihotri , S , Zadeh , G , Asara , J M , Anastasiou , D , Arends , M J , Cantley , L C & Poulogiannis , G 2017 , ' PARK2 Depletion Connects Energy and Oxidative Stress to PI3K/Akt Activation via PTEN S-Nitrosylation ' , Molecular Cell , vol. 65 , no. 6 , pp. 999-1013.e7 . https://doi.org/10.1016/j.molcel.2017.02.019
dc.identifier.issn1097-2765
dc.identifier.urihttp://hdl.handle.net/2299/18270
dc.descriptionThis is an Open Access article, Open Access funded by Wellcome Trust Under a Creative Commons license.
dc.description.abstractPARK2 is a gene implicated in disease states with opposing responses in cell fate determination, yet its contribution in pro-survival signaling is largely unknown. Here we show that PARK2 is altered in over a third of all human cancers, and its depletion results in enhanced phosphatidylinositol 3-kinase/Akt (PI3K/Akt) activation and increased vulnerability to PI3K/Akt/mTOR inhibitors. PARK2 depletion contributes to AMPK-mediated activation of endothelial nitric oxide synthase (eNOS), enhanced levels of reactive oxygen species, and a concomitant increase in oxidized nitric oxide levels, thereby promoting the inhibition of PTEN by S-nitrosylation and ubiquitination. Notably, AMPK activation alone is sufficient to induce PTEN S-nitrosylation in the absence of PARK2 depletion. Park2 loss and Pten loss also display striking cooperativity to promote tumorigenesis in vivo. Together, our findings reveal an important missing mechanism that might account for PTEN suppression in PARK2-deficient tumors, and they highlight the importance of PTEN S-nitrosylation in supporting cell survival and proliferation under conditions of energy deprivation.en
dc.format.extent5620482
dc.language.isoeng
dc.relation.ispartofMolecular Cell
dc.subjectJournal Article
dc.titlePARK2 Depletion Connects Energy and Oxidative Stress to PI3K/Akt Activation via PTEN S-Nitrosylationen
dc.contributor.institutionSchool of Life and Medical Sciences
dc.contributor.institutionBiosciences Research Group
dc.contributor.institutionExtracellular Vesicle Research Unit
dc.contributor.institutionCentre for Research in Mechanisms of Disease and Drug Discovery
dc.contributor.institutionDepartment of Clinical, Pharmaceutical and Biological Science
dc.contributor.institutionCentre for Future Societies Research
dc.description.statusPeer reviewed
rioxxterms.versionofrecord10.1016/j.molcel.2017.02.019
rioxxterms.typeJournal Article/Review
herts.preservation.rarelyaccessedtrue


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