Related Experiment Video
Updated: Aug 31, 2025

Author Spotlight: Advancing the Detection of Low-Frequency Mutations in Cancer Tissues
Published on: August 23, 2024
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.
Abstract:
The IFITM restriction factors play a role in cancer cell progression through undefined mechanisms. We investigate new protein-protein interactions for IFITM1/3 in the context of cancer that would shed some light on how IFITM1/3 attenuate the expression of targeted proteins such as HLA-B. SBP-tagged IFITM1 protein was used to identify an association of IFITM1 protein with the SRSF1 splicing factor and transporter of mRNA to the ribosome. Using in situ proximity ligation assays, we confirmed a predominant cytosolic protein-protein association for SRSF1 and IFITM1/3. Accordingly, IFITM1/3 interacted with HLA-B mRNA in response to IFNγ stimulation using RNA-protein proximity ligation assays. In addition, RT-qPCR assays in IFITM1/IFITM3 null cells and wt-SiHa cells indicated that HLA-B gene expression at the mRNA level does not account for lowered HLA-B protein synthesis in response to IFNγ. Complementary, shotgun RNA sequencing did not show major transcript differences between IFITM1/IFITM3 null cells and wt-SiHa cells. Furthermore, ribosome profiling using sucrose gradient sedimentation identified a reduction in 80S ribosomal fraction an IFITM1/IFITM3 null cells compared to wild type. It was partially reverted by IFITM1/3 complementation. Our data link IFITM1/3 proteins to HLA-B mRNA and SRSF1 and, all together, our results begin to elucidate how IFITM1/3 catalyze the synthesis of target proteins. IFITMs are widely studied for their role in inhibiting viruses, and multiple studies have associated IFITMs with cancer progression. Our study has identified new proteins associated with IFITMs which support their role in mediating protein expression; a pivotal function that is highly relevant for viral infection and cancer progression. Our results suggest that IFITM1/3 affect the expression of targeted proteins; among them, we identified HLA-B. Changes in HLA-B expression could impact the presentation and recognition of oncogenic antigens on the cell surface by cytotoxic T cells and, ultimately, limit tumor cell eradication. In addition, the role of IFITMs in mediating protein abundance is relevant, as it has the potential for regulating the expression of viral and oncogenic proteins.
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.
Related Concept Videos
RNA Splicing
Antigen Processing Pathways
MHC Class I: Presenting Endogenous...
Antigens Involved in Adaptive Immunity
Complete Antigens
Complete antigens possess both immunogenicity and...
Alternative RNA Splicing
There are five types of alternative RNA splicing that vary in the ways the pre-mRNA segments are removed or retained in the mature mRNA. The first...
Leaky Scanning
Chromatin Structure Regulates pre-mRNA Processing
The chromatin structure, especially...

