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SAM68: Signal Transduction and RNA Metabolism in Human Cancer
Paola Frisone1, Davide Pradella2, Anna Di Matteo2
1Laboratory of Cellular and Molecular Neurobiology, Santa Lucia Foundation, 00143 Rome, Italy.
Abstract:
Alterations in expression and/or activity of splicing factors as well as mutations in cis-acting splicing regulatory sequences contribute to cancer phenotypes. Genome-wide studies have revealed more than 15,000 tumor-associated splice variants derived from genes involved in almost every aspect of cancer cell biology, including proliferation, differentiation, cell cycle control, metabolism, apoptosis, motility, invasion, and angiogenesis. In the past decades, several RNA binding proteins (RBPs) have been implicated in tumorigenesis. SAM68 (SRC associated in mitosis of 68 kDa) belongs to the STAR (signal transduction and activation of RNA metabolism) family of RBPs. SAM68 is involved in several steps of mRNA metabolism, from transcription to alternative splicing and then to nuclear export. Moreover, SAM68 participates in signaling pathways associated with cell response to stimuli, cell cycle transitions, and viral infections. Recent evidence has linked this RBP to the onset and progression of different tumors, highlighting misregulation of SAM68-regulated splicing events as a key step in neoplastic transformation and tumor progression. Here we review recent studies on the role of SAM68 in splicing regulation and we discuss its contribution to aberrant pre-mRNA processing in cancer.
Insights
Altered splicing due to RNA binding proteins like SAM68 (SRC associated in mitosis of 68 kDa) contributes to cancer. Misregulation of SAM68-controlled splicing is key in tumor development and progression.
Area of Science:
- Molecular Biology
- Cancer Research
- RNA Metabolism
Background:
- Aberrant splicing factors and mutations drive cancer.
- Over 15,000 tumor-associated splice variants impact cancer biology.
- RNA binding proteins (RBPs) are implicated in tumorigenesis.
Purpose of the Study:
- To review the role of SAM68 (SRC associated in mitosis of 68 kDa) in splicing regulation.
- To discuss SAM68's contribution to aberrant pre-mRNA processing in cancer.
Main Methods:
- Literature review of recent studies on SAM68.
- Analysis of SAM68's involvement in mRNA metabolism and signaling pathways.
Main Results:
- SAM68, a STAR family RBP, regulates transcription, alternative splicing, and nuclear export.
- SAM68 is involved in cell signaling, cell cycle, and viral infections.
- Evidence links SAM68 misregulation to cancer onset and progression.
Conclusions:
- SAM68 plays a significant role in RNA metabolism and cellular processes.
- Misregulated SAM68-dependent splicing is a critical factor in neoplastic transformation.
- Targeting SAM68-regulated splicing may offer therapeutic strategies for cancer.
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