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Engineering Artificial Factors to Specifically Manipulate Alternative Splicing in Human Cells
Published on: April 26, 2017
Alternative Splicing by NOVA Factors: From Gene Expression to Cell Physiology and Pathology
1Department of Neuroscience, San Raffaele Institute and San Raffaele University, via Olgettina 58, 20132 Milan, Italy.
Abstract:
NOVA1 and NOVA2, the two members of the NOVA family of alternative splicing factors, bind YCAY clusters of pre-mRNAs and assemble spliceosomes to induce the maintenance/removal of introns and exons, thus governing the development of mRNAs. Members of other splicing families operate analogously. Activity of NOVAs accounts for up to 700 alternative splicing events per cell, taking place both in the nucleus (co-transcription of mRNAs) and in the cytoplasm. Brain neurons express high levels of NOVAs, with NOVA1 predominant in cerebellum and spinal cord, NOVA2 in the cortex. Among brain physiological processes NOVAs play critical roles in axon pathfinding and spreading, structure and function of synapses, as well as the regulation of surface receptors and voltage-gated channels. In pathology, NOVAs contribute to neurodegenerative diseases and epilepsy. In vessel endothelial cells, NOVA2 is essential for angiogenesis, while in adipocytes, NOVA1 contributes to regulation of thermogenesis and obesity. In many cancers NOVA1 and also NOVA2, by interacting with specific miRNAs and by additional mechanisms, activate oncogenic roles promoting cell proliferation, colony formation, migration, and invasion. In conclusion, NOVAs regulate cell functions of physiological and pathological nature. Single cell identification and distinction, and new therapies addressed to NOVA targets might be developed in the near future.
Insights
NOVA1 and NOVA2 proteins regulate gene expression through alternative splicing in various cell types. Dysregulation of these splicing factors contributes to neurological disorders, metabolic diseases, and cancer progression.
Area of Science:
- Molecular Biology
- Cell Biology
- Genetics
Background:
- NOVA1 and NOVA2 are key splicing factors regulating mRNA processing.
- They bind specific RNA sequences (YCAY clusters) to control intron/exon dynamics.
- Alternative splicing orchestrated by NOVAs impacts numerous cellular functions.
Purpose of the Study:
- To elucidate the diverse roles of NOVA1 and NOVA2 in cellular physiology and pathology.
- To highlight their involvement in neuronal development, angiogenesis, and metabolic regulation.
- To explore their contribution to cancer and neurodegenerative diseases.
Main Methods:
- Analysis of NOVA protein binding to pre-mRNAs.
- Investigating NOVA-mediated alternative splicing events.
- Examining NOVA expression and function in different cell types and disease models.
Main Results:
- NOVAs drive up to 700 alternative splicing events per cell, in both nucleus and cytoplasm.
- High NOVA expression in brain neurons is crucial for axon guidance, synapse function, and receptor/channel regulation.
- NOVA2 is vital for angiogenesis; NOVA1 regulates thermogenesis and obesity.
- Both NOVA1 and NOVA2 promote oncogenic activities in various cancers.
Conclusions:
- NOVA proteins are critical regulators of diverse cellular functions, spanning normal physiology to pathological conditions.
- Their roles extend from neuronal development and metabolism to cancer.
- Targeting NOVA proteins may offer therapeutic avenues for neurological diseases and cancer.
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