4.5 Article

Linking epigenetic signature and metabolic phenotype in IDH mutant and IDH wildtype diffuse glioma

期刊

NEUROPATHOLOGY AND APPLIED NEUROBIOLOGY
卷 47, 期 3, 页码 379-393

出版社

WILEY
DOI: 10.1111/nan.12669

关键词

glioma; metabolism; mitochondria; DNA methylation; IDH mutation

资金

  1. Projekt DEAL

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This study aims to characterize metabolic features in different molecular subgroups of gliomas, focusing on the impact of metabolic alterations on patient outcomes. Results showed that DNA methylation patterns of metabolic genes can distinguish between IDHmut and IDHwt gliomas, and mitochondrial DNA copy number and immune cell content analysis can predict patient survival under anti-angiogenic therapy. Genomic signatures related to metabolism could indicate specific tumor subgroups with metabolic vulnerabilities.
Aims Changes in metabolism are known to contribute to tumour phenotypes. If and how metabolic alterations in brain tumours contribute to patient outcome is still poorly understood. Epigenetics impact metabolism and mitochondrial function. The aim of this study is a characterisation of metabolic features in molecular subgroups of isocitrate dehydrogenase mutant (IDHmut) and isocitrate dehydrogenase wildtype (IDHwt) gliomas. Methods We employed DNA methylation pattern analyses with a special focus on metabolic genes, large-scale metabolism panel immunohistochemistry (IHC), qPCR-based determination of mitochondrial DNA copy number and immune cell content using IHC and deconvolution of DNA methylation data. We analysed molecularly characterised gliomas (n = 57) for in depth DNA methylation, a cohort of primary and recurrent gliomas (n = 22) for mitochondrial copy number and validated these results in a large glioma cohort (n = 293). Finally, we investigated the potential of metabolic markers in Bevacizumab (Bev)-treated gliomas (n = 29). Results DNA methylation patterns of metabolic genes successfully distinguished the molecular subtypes of IDHmut and IDHwt gliomas. Promoter methylation of lactate dehydrogenase A negatively correlated with protein expression and was associated with IDHmut gliomas. Mitochondrial DNA copy number was increased in IDHmut tumours and did not change in recurrent tumours. Hierarchical clustering based on metabolism panel IHC revealed distinct subclasses of IDHmut and IDHwt gliomas with an impact on patient outcome. Further quantification of these markers allowed for the prediction of survival under anti-angiogenic therapy. Conclusion A mitochondrial signature was associated with increased survival in all analyses, which could indicate tumour subgroups with specific metabolic vulnerabilities.

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