The paralogues MAGOH and MAGOHB are oncogenic factors in high-grade gliomas and safeguard the splicing of cell division and cell cycle genes

التفاصيل البيبلوغرافية
العنوان: The paralogues MAGOH and MAGOHB are oncogenic factors in high-grade gliomas and safeguard the splicing of cell division and cell cycle genes
المؤلفون: Rodrigo A. S. Barreiro, Gabriela D. A. Guardia, Fabiana M. Meliso, Xiufen Lei, Wei-Qing Li, Andre Savio, Martin Fellermeyer, Helena B. Conceição, Rafael L. V. Mercuri, Tesha Landry, Mei Qiao, Lorea Blazquez, Jernej Ule, Luiz O. F. Penalva, Pedro A. F. Galante
بيانات النشر: Cold Spring Harbor Laboratory, 2022.
سنة النشر: 2022
مصطلحات موضوعية: Ecology,Evolution & Ethology, FOS: Clinical medicine, Stem Cells, Neurosciences, Gene Expression, Biochemistry & Proteomics, Genetics & Genomics, Computational & Systems Biology
الوصف: The exon junction complex (EJC) plays key roles throughout the lifespan of RNA and is particularly relevant in the nervous system. We investigated the roles of two EJC members, the paralogs MAGOH and MAGOHB, with respect to brain tumor development. High MAGOH/MAGOHB expression was observed in 14 tumor types; glioblastoma (GBM) showed the greatest difference compared to normal tissue. Increased MAGOH/MAGOHB expression was associated with poor prognosis in glioma patients, while knockdown of MAGOH/MAGOHB affected different cancer phenotypes. Reduced MAGOH/MAGOHB expression in GBM cells caused alterations in the splicing profile, including re-splicing and skipping of multiple exons. The binding profiles of EJC proteins indicated that exons affected by MAGOH/MAGOHB knockdown accumulated fewer complexes on average, providing a possible explanation for their sensitivity to MAGOH/MAGOHB knockdown. Transcripts (genes) showing alterations in the splicing profile are mainly implicated in cell division, cell cycle, splicing, and translation. We propose that high MAGOH/MAGOHB levels are required to safeguard the splicing of genes in high demand in scenarios requiring increased cell proliferation (brain development and GBM growth), ensuring efficient cell division, cell cycle regulation, and gene expression (splicing and translation). Since differentiated neuronal cells do not require increased MAGOH/MAGOHB expression, targeting these paralogs is a potential option for treating GBM.
URL الوصول: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::dceb6689616eb1949fcc9f23da8b8991
https://doi.org/10.1101/2022.12.20.521107
رقم الأكسشن: edsair.doi.dedup.....dceb6689616eb1949fcc9f23da8b8991
قاعدة البيانات: OpenAIRE