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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Protein kinases that phosphorylate splicing factors: Roles in cancer development, progression and possible
Alicja Czubaty1, Agnieszka Piekiełko-Witkowska2
1Department of Molecular Biology, Faculty of Biology, University of Warsaw, ul. Miecznikowa 1, 02-096 Warsaw, Poland.
Abstract:
Disturbed alternative splicing is a common feature of human tumors. Splicing factors that control alternative splicing are phosphorylated by multiple kinases, including these that specifically add phosphoryl groups to serine-arginine rich proteins (e.g. SR-protein kinases, cdc2-like kinases, topoisomerase 1), and protein kinases that govern key cellular signaling pathways (i.e. AKT). Phosphorylation of splicing factors regulates their subcellular localization and interactions with target transcripts and protein partners, and thus significantly contributes the final result of splicing reactions. In this review we aim to summarize the current knowledge on the role of splicing kinases in cancer. Published studies and recently released data of The Cancer Genome Atlas demonstrate that expressions and activities of splicing kinases are commonly disturbed in cancers. Aberrant functioning of splicing kinases results in changed alternative splicing of tumor suppressors (e.g. p53) and regulators of cell signaling (e.g. MAPKs), apoptosis (e.g. MCL), and angiogenesis (VEGF). Splicing kinases act in complicated regulatory networks in which they mutually affect each other's activity to provide tight control of cellular signaling. Dysregulation of these regulatory networks contributes to oncogenic transformation, uncontrolled proliferation, enhanced migration and invasion. Furthermore, the activities of splicing kinases significantly contribute to cellular responses to genotoxic stress. In conclusion, published data provide strong evidence that splicing kinases emerge as important regulators of key processes governing malignant transformation, progression, and response to therapeutic treatments, suggesting their potential as clinically relevant targets.
Insights
Disturbed splicing kinases drive cancer by altering gene expression. Targeting these kinases may offer new therapeutic strategies for cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Alternative splicing is frequently disrupted in human cancers.
- Splicing factors are regulated by phosphorylation, involving kinases like SR-protein kinases and AKT.
- This phosphorylation impacts splicing factor function and outcomes.
Purpose of the Study:
- To review the current understanding of splicing kinases' roles in cancer.
- To highlight how splicing kinase dysregulation contributes to cancer development and progression.
Main Methods:
- Literature review of published studies.
- Analysis of The Cancer Genome Atlas (TCGA) data.
- Synthesis of current knowledge on splicing kinase networks and their impact on cancer-related genes.
Main Results:
- Splicing kinase expression and activity are commonly altered in various cancers.
- Aberrant splicing kinase function leads to altered splicing of key cancer-related genes (e.g., p53, MCL, VEGF).
- Dysregulated splicing kinase networks promote oncogenesis, proliferation, migration, and invasion.
Conclusions:
- Splicing kinases are critical regulators of malignant transformation, cancer progression, and treatment response.
- Their involvement in cellular responses to genotoxic stress is significant.
- Splicing kinases represent promising therapeutic targets in oncology.
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