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dc.contributor.authorBiedermann, Juliaen_US
dc.contributor.authorPreussler, Mathiasen_US
dc.contributor.authorConde, Marinaen_US
dc.contributor.authorPeitzsch, Mirkoen_US
dc.contributor.authorRichter, Susanen_US
dc.contributor.authorWiedemuth, Ralfen_US
dc.contributor.authorAbou-El-Ardat, Khalilen_US
dc.contributor.authorKrüger, Alexanderen_US
dc.contributor.authorMeinhardt, Mathiasen_US
dc.contributor.authorSchackert, Gabrieleen_US
dc.contributor.authorLeenders, William P.J.en_US
dc.contributor.authorHerold-Mende, Christelen_US
dc.contributor.authorNiclou, Simone Pierretteen_US
dc.contributor.authorBjerkvig, Rolfen_US
dc.contributor.authorEisenhofer, Graemeen_US
dc.contributor.authorTemme, Achimen_US
dc.contributor.authorSeifert, Michaelen_US
dc.contributor.authorKunz-Schughart, Leoni A.en_US
dc.contributor.authorSchröck, Evelinen_US
dc.contributor.authorKlink, Barbaraen_US
dc.date.accessioned2020-06-17T10:35:53Z
dc.date.available2020-06-17T10:35:53Z
dc.date.issued2019-12-16
dc.PublishedBiedermann, Preussler, Conde, Peitzsch, Richter, Wiedemuth, Abou-El-Ardat K, Krüger, Meinhardt, Schackert G, Leenders WP, Herold-Mende CC, Niclou S, Bjerkvig R, Eisenhofer, Temme A, Seifert, Kunz-Schughart LA, Schröck E, Klink B. Mutant IDH1 Differently Affects Redox State and Metabolism in Glial Cells of Normal and Tumor Origin. Cancers. 2019;11(12)eng
dc.identifier.issn2072-6694
dc.identifier.urihttps://hdl.handle.net/1956/22676
dc.description.abstractIDH1R132H (isocitrate dehydrogenase 1) mutations play a key role in the development of low-grade gliomas. IDH1wt converts isocitrate to α-ketoglutarate while reducing nicotinamide adenine dinucleotide phosphate (NADP+), whereas IDH1R132H uses α-ketoglutarate and NADPH to generate the oncometabolite 2-hydroxyglutarate (2-HG). While the effects of 2-HG have been the subject of intense research, the 2-HG independent effects of IDH1R132H are still ambiguous. The present study demonstrates that IDH1R132H expression but not 2-HG alone leads to significantly decreased tricarboxylic acid (TCA) cycle metabolites, reduced proliferation, and enhanced sensitivity to irradiation in both glioblastoma cells and astrocytes in vitro. Glioblastoma cells, but not astrocytes, showed decreased NADPH and NAD+ levels upon IDH1R132H transduction. However, in astrocytes IDH1R132H led to elevated expression of the NAD-synthesizing enzyme nicotinamide phosphoribosyltransferase (NAMPT). These effects were not 2-HG mediated. This suggests that IDH1R132H cells utilize NAD+ to restore NADP pools, which only astrocytes could compensate via induction of NAMPT. We found that the expression of NAMPT is lower in patient-derived IDH1-mutant glioma cells and xenografts compared to IDH1-wildtype models. The Cancer Genome Atlas (TCGA) data analysis confirmed lower NAMPT expression in IDH1-mutant versus IDH1-wildtype gliomas. We show that the IDH1 mutation directly affects the energy homeostasis and redox state in a cell-type dependent manner. Targeting the impairments in metabolism and redox state might open up new avenues for treating IDH1-mutant gliomas.en_US
dc.language.isoengeng
dc.publisherMDPIeng
dc.rightsAttribution CC BYeng
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/eng
dc.titleMutant IDH1 Differently Affects Redox State and Metabolism in Glial Cells of Normal and Tumor Originen_US
dc.typePeer reviewed
dc.typeJournal article
dc.date.updated2020-01-28T12:21:23Z
dc.description.versionpublishedVersionen_US
dc.rights.holderCopyright 2019 The Author(s)
dc.identifier.doihttps://doi.org/10.3390/cancers11122028
dc.identifier.cristin1784133
dc.source.journalCancers


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