Emergent Role of IFITM1/3 towards Splicing Factor (SRSF1) and Antigen-Presenting Molecule (HLA-B) in Cervical Cancer

Maria Gómez-Herranz1,2, Jakub Faktor2,3, Marcos Yébenes Mayordomo1,2

  • 1Institute of Genetics and Cancer, University of Edinburgh, Edinburgh EH4 2XU, UK.

Biomolecules
|August 26, 2022
PubMed

Insights

Interferon-induced transmembrane proteins (IFITM1/3) interact with SRSF1 and HLA-B mRNA, impacting protein synthesis and cancer progression. These findings reveal new mechanisms for IFITM1/3 in regulating protein expression relevant to viral infection and cancer.

Area of Science:

  • Cell Biology
  • Molecular Oncology
  • Immunology

Background:

  • Interferon-induced transmembrane proteins (IFITMs) are known for antiviral roles and are implicated in cancer progression through poorly understood mechanisms.
  • Investigating IFITM1/3 protein-protein interactions offers insights into how these factors modulate targeted protein expression, such as HLA-B.

Purpose of the Study:

  • To identify novel protein-protein interactions of IFITM1/3 in the context of cancer.
  • To elucidate the mechanisms by which IFITM1/3 influence the expression of target proteins like HLA-B.

Main Methods:

  • Used SBP-tagged IFITM1 to identify interacting proteins, including SRSF1.
  • Employed in situ proximity ligation assays to confirm cytosolic interactions between SRSF1 and IFITM1/3.
  • Utilized RNA-protein proximity ligation assays to detect IFITM1/3 interaction with HLA-B mRNA.
  • Performed RT-qPCR, shotgun RNA sequencing, and ribosome profiling in IFITM1/IFITM3 null and wild-type cells.

Main Results:

  • Identified an association between IFITM1 and the SRSF1 splicing factor and mRNA transporter.
  • Confirmed cytosolic protein-protein association of SRSF1 with IFITM1/3.
  • Demonstrated IFITM1/3 interaction with HLA-B mRNA upon IFNγ stimulation.
  • Found that IFITM1/3 deficiency reduced the 80S ribosomal fraction, indicating an impact on translation.
  • Observed no significant changes in HLA-B mRNA levels or overall transcriptomes in IFITM1/IFITM3 null cells.

Conclusions:

  • IFITM1/3 proteins are linked to SRSF1 and HLA-B mRNA, suggesting a role in catalyzing target protein synthesis.
  • These findings provide a mechanistic basis for IFITM1/3's role in viral infection and cancer progression by regulating protein abundance.
  • Altered HLA-B expression due to IFITM1/3 activity could affect anti-tumor immune responses by modulating antigen presentation.

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