Transcription Factors in Cancer: When Alternative Splicing Determines Opposite Cell Fates
Open Access
- 20 March 2020
- Vol. 9 (3), 760
- https://doi.org/10.3390/cells9030760
Abstract
Alternative splicing (AS) is a finely regulated mechanism for transcriptome and proteome diversification in eukaryotic cells. Correct balance between AS isoforms takes part in molecular mechanisms that properly define spatiotemporal and tissue specific transcriptional programs in physiological conditions. However, several diseases are associated to or even caused by AS alterations. In particular, multiple AS changes occur in cancer cells and sustain the oncogenic transcriptional program. Transcription factors (TFs) represent a key class of proteins that control gene expression by direct binding to DNA regulatory elements. AS events can generate cancer-associated TF isoforms with altered activity, leading to sustained proliferative signaling, differentiation block and apoptosis resistance, all well-known hallmarks of cancer. In this review, we focus on how AS can produce TFs isoforms with opposite transcriptional activities or antagonistic functions that severely impact on cancer biology. This summary points the attention to the relevance of the analysis of TFs splice variants in cancer, which can allow patients stratification despite the presence of interindividual genetic heterogeneity. Recurrent TFs variants that give advantage to specific cancer types not only open the opportunity to use AS transcripts as clinical biomarkers but also guide the development of new anti-cancer strategies in personalized medicine.Keywords
Funding Information
- Associazione Italiana per la Ricerca sul Cancro (IG 2018 - ID 21323)
This publication has 188 references indexed in Scilit:
- Extensive Alternative Splicing of the Repressor Element Silencing Transcription Factor Linked to CancerPLOS ONE, 2013
- Transcription factors: from enhancer binding to developmental controlNature Reviews Genetics, 2012
- Identification of T-cell factor-4 isoforms that contribute to the malignant phenotype of hepatocellular carcinoma cellsExperimental Cell Research, 2011
- Transcriptional Repression: Conserved and Evolved FeaturesCurrent Biology, 2010
- Emerging Roles of Kruppel‐Like Factor 6 and Kruppel‐Like Factor 6 Splice Variant 1 in Ovarian Cancer Progression and TreatmentMount Sinai Journal of Medicine: A Journal of Translational and Personalized Medicine, 2009
- Revealing Global Regulatory Perturbations across Human CancersMolecular Cell, 2009
- Initiation of myoblast to brown fat switch by a PRDM16–C/EBP-β transcriptional complexNature, 2009
- CCAAT/enhancer-binding protein β: its role in breast cancer and associations with receptor tyrosine kinasesExpert Reviews in Molecular Medicine, 2009
- Menin Critically Links MLL Proteins with LEDGF on Cancer-Associated Target GenesCancer Cell, 2008
- The TEAD/TEF Family of Transcription Factor Scalloped Mediates Hippo Signaling in Organ Size ControlDevelopmental Cell, 2008