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dc.contributor.authorLópez de la Oliva, AR
dc.contributor.authorCampos-Sandoval, JA
dc.contributor.authorGómez-García, MC
dc.contributor.authorCardona, C
dc.contributor.authorMartín-Rufián, M
dc.contributor.authorSialana, FJ
dc.contributor.authorCastilla, L
dc.contributor.authorBae, N
dc.contributor.authorLobo, C
dc.contributor.authorPeñalver, A
dc.contributor.authorGarcía-Frutos, M
dc.contributor.authorCarro, D
dc.contributor.authorEnrique, V
dc.contributor.authorPaz, JC
dc.contributor.authorMirmira, RG
dc.contributor.authorGutiérrez, A
dc.contributor.authorAlonso, FJ
dc.contributor.authorSegura, JA
dc.contributor.authorMatés, JM
dc.contributor.authorLubec, G
dc.contributor.authorMárquez, J
dc.coverage.spatialEngland
dc.date.accessioned2023-07-12T09:07:45Z
dc.date.available2023-07-12T09:07:45Z
dc.date.issued2020-02-10
dc.identifierARTN 2259
dc.identifier10.1038/s41598-020-58264-4
dc.identifier.citationScientific Reports, 2020, 10 (1), pp. 2259 -en_US
dc.identifier.issn2045-2322
dc.identifier.urihttps://repository.icr.ac.uk/handle/internal/5888
dc.identifier.eissn2045-2322
dc.identifier.eissn2045-2322
dc.identifier.doi10.1038/s41598-020-58264-4
dc.description.abstractGlutaminase (GA) catalyzes the first step in mitochondrial glutaminolysis playing a key role in cancer metabolic reprogramming. Humans express two types of GA isoforms: GLS and GLS2. GLS isozymes have been consistently related to cell proliferation, but the role of GLS2 in cancer remains poorly understood. GLS2 is repressed in many tumor cells and a better understanding of its function in tumorigenesis may further the development of new therapeutic approaches. We analyzed GLS2 expression in HCC, GBM and neuroblastoma cells, as well as in monkey COS-7 cells. We studied GLS2 expression after induction of differentiation with phorbol ester (PMA) and transduction with the full-length cDNA of GLS2. In parallel, we investigated cell cycle progression and levels of p53, p21 and c-Myc proteins. Using the baculovirus system, human GLS2 protein was overexpressed, purified and analyzed for posttranslational modifications employing a proteomics LC-MS/MS platform. We have demonstrated a dual targeting of GLS2 in human cancer cells. Immunocytochemistry and subcellular fractionation gave consistent results demonstrating nuclear and mitochondrial locations, with the latter being predominant. Nuclear targeting was confirmed in cancer cells overexpressing c-Myc- and GFP-tagged GLS2 proteins. We assessed the subnuclear location finding a widespread distribution of GLS2 in the nucleoplasm without clear overlapping with specific nuclear substructures. GLS2 expression and nuclear accrual notably increased by treatment of SH-SY5Y cells with PMA and it correlated with cell cycle arrest at G2/M, upregulation of tumor suppressor p53 and p21 protein. A similar response was obtained by overexpression of GLS2 in T98G glioma cells, including downregulation of oncogene c-Myc. Furthermore, human GLS2 was identified as being hypusinated by MS analysis, a posttranslational modification which may be relevant for its nuclear targeting and/or function. Our studies provide evidence for a tumor suppressor role of GLS2 in certain types of cancer. The data imply that GLS2 can be regarded as a highly mobile and multilocalizing protein translocated to both mitochondria and nuclei. Upregulation of GLS2 in cancer cells induced an antiproliferative response with cell cycle arrest at the G2/M phase.
dc.formatElectronic
dc.format.extent2259 -
dc.languageeng
dc.language.isoengen_US
dc.publisherNATURE PUBLISHING GROUPen_US
dc.relation.ispartofScientific Reports
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en_US
dc.subjectAnimals
dc.subjectCOS Cells
dc.subjectCarcinogenesis
dc.subjectCell Cycle Checkpoints
dc.subjectCell Differentiation
dc.subjectCell Line, Tumor
dc.subjectCell Proliferation
dc.subjectChlorocebus aethiops
dc.subjectGlutaminase
dc.subjectHep G2 Cells
dc.subjectHumans
dc.subjectNeoplasms
dc.titleNuclear Translocation of Glutaminase GLS2 in Human Cancer Cells Associates with Proliferation Arrest and Differentiation.en_US
dc.typeJournal Article
dcterms.dateAccepted2020-01-08
dc.date.updated2023-07-11T12:46:37Z
rioxxterms.versionVoRen_US
rioxxterms.versionofrecord10.1038/s41598-020-58264-4en_US
rioxxterms.licenseref.startdate2020-02-10
rioxxterms.typeJournal Article/Reviewen_US
pubs.author-urlhttps://www.ncbi.nlm.nih.gov/pubmed/32042057
pubs.issue1
pubs.organisational-group/ICR
pubs.publication-statusPublished online
pubs.publisher-urlhttp://dx.doi.org/10.1038/s41598-020-58264-4
pubs.volume10
icr.researchteamProte & Metabolomics Facen_US
dc.contributor.icrauthorSialana, Fernando Jr
icr.provenanceDeposited by Dr Fernando Jr Sialana on 2023-07-11. Deposit type is initial. No. of files: 1. Files: Nuclear Translocation of Glutaminase GLS2 in Human Cancer Cells Associates with Proliferation Arrest and Differentiation.pdf


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