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Updated: May 7, 2026

Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Phosphorylation-mediated regulation of alternative splicing in cancer
1Department of Biomedicine and Prevention, University of Rome "Tor Vergata", 00133 Rome, Italy ; Laboratories of Neuroembryology and of Cellular and Molecular Neurobiology, Fondazione Santa Lucia IRCCS, 00143 Rome, Italy.
Abstract:
Alternative splicing (AS) is one of the key processes involved in the regulation of gene expression in eukaryotic cells. AS catalyzes the removal of intronic sequences and the joining of selected exons, thus ensuring the correct processing of the primary transcript into the mature mRNA. The combinatorial nature of AS allows a great expansion of the genome coding potential, as multiple splice-variants encoding for different proteins may arise from a single gene. Splicing is mediated by a large macromolecular complex, the spliceosome, whose activity needs a fine regulation exerted by cis-acting RNA sequence elements and trans-acting RNA binding proteins (RBP). The activity of both core spliceosomal components and accessory splicing factors is modulated by their reversible phosphorylation. The kinases and phosphatases involved in these posttranslational modifications significantly contribute to AS regulation and to its integration in the complex regulative network that controls gene expression in eukaryotic cells. Herein, we will review the major canonical and noncanonical splicing factor kinases and phosphatases, focusing on those whose activity has been implicated in the aberrant splicing events that characterize neoplastic transformation.
Insights
Alternative splicing (AS) regulates gene expression by creating diverse proteins from a single gene. Kinases and phosphatases modulate AS, with aberrant activity linked to cancer development.
Area of Science:
- Molecular Biology
- Gene Expression Regulation
- Eukaryotic Gene Processing
Background:
- Alternative splicing (AS) is crucial for eukaryotic gene expression, producing multiple mRNA variants from one gene.
- The spliceosome complex, regulated by cis-acting elements and RNA-binding proteins (RBPs), mediates AS.
- Post-translational modification, specifically phosphorylation, fine-tunes splicing factor activity.
Purpose of the Study:
- To review major kinases and phosphatases regulating splicing factors.
- To highlight their role in aberrant splicing during neoplastic transformation.
Main Methods:
- Literature review of canonical and noncanonical splicing factor kinases and phosphatases.
- Focus on enzymes implicated in cancer-related splicing.
Main Results:
- Identified key kinases and phosphatases involved in splicing regulation.
- Detailed their contribution to altered splicing patterns in cancer.
Conclusions:
- Kinase and phosphatase activity is critical for precise AS regulation.
- Dysregulation of these enzymes contributes significantly to the aberrant splicing observed in cancer.
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