SRSF3-Regulated RNA Alternative Splicing Promotes Glioblastoma Tumorigenicity by Affecting Multiple Cellular

Xiao Song1, Xuechao Wan1, Tianzhi Huang1

  • 1The Ken & Ruth Davee Department of Neurology, Northwestern University Feinberg School of Medicine, Chicago, Illinois.

Cancer Research
|August 30, 2019
PubMed

Insights

Serine and arginine rich splicing factor 3 (SRSF3) promotes glioma progression by altering RNA splicing. Targeting SRSF3-regulated alternative splicing may offer new glioblastoma treatment strategies.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Misregulated alternative RNA splicing (AS) is implicated in human cancer development, including glioblastoma (GBM).
  • SRSF3 is a key splicing factor whose dysregulation is linked to tumor progression and poor patient prognosis in glioma.

Purpose of the Study:

  • To investigate the role of SRSF3 in glioma tumorigenesis and its impact on alternative splicing.
  • To identify SRSF3-regulated genes and understand the functional consequences of altered splicing in glioblastoma stem-like cells (GSCs).

Main Methods:

  • Analysis of SRSF3 expression in clinical glioma specimens.
  • Functional studies in patient-derived GSCs to assess the impact of SRSF3 on proliferation, self-renewal, and tumorigenesis.
  • Transcriptomic profiling to identify SRSF3-affected AS events.
  • CRISPR/Cas9 gene editing to validate the functional impact of specific AS events in genes like ETV1 and NDE1.

Main Results:

  • SRSF3 was frequently upregulated in glioma tissues and associated with tumor progression and poor prognosis.
  • SRSF3 overexpression promoted GSC proliferation, self-renewal, and tumorigenesis.
  • Over 1,000 SRSF3-dependent AS events were identified, with a preference for exon skipping in cell mitosis genes.
  • SRSF3-regulated AS of ETV1 and NDE1 significantly enhanced their oncogenic activity in GSCs.

Conclusions:

  • SRSF3 is a critical regulator of alternative splicing in glioblastoma.
  • SRSF3 acts as an oncogenic factor contributing to GBM tumor biology.
  • Understanding SRSF3-mediated AS mechanisms is crucial for developing novel therapeutic strategies for GBM.

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