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Updated: Apr 4, 2026

Using RNA-sequencing to Detect Novel Splice Variants Related to Drug Resistance in In Vitro Cancer Models
Published on: December 9, 2016
Novel splice variants of CXCR4 identified by transcriptome sequencing
L G L Sand1, A G Jochemsen2, E Beletkaia3
1Department of Pathology, Leiden University Medical Center, Leiden, The Netherlands.
Abstract:
Chemokine receptor CXCR4 is involved in tumor growth, angiogenesis and metastasis. Its function is regulated in many ways and one of them is alternative splicing. We identified two novel coding splice variants (CXCR4-3 and CXCR4-4) of CXCR4 in Ewing sarcoma (EWS) cell lines by whole transcriptome sequencing and validated these with reverse transcriptase- PCR and Sanger sequencing. The novel splice variants were expressed at RNA level in Ewing sarcoma samples and in other tumor cell lines and placenta, but not in lung. Due to inclusion of an additional exon the new isoforms have a 70 and 33 amino acid elongation of the N-terminal end of CXCR4. For validation at protein and functional level, the identified isoforms and normal CXCR4 were cloned into an EYFP tagged vector and ectopically expressed in HEK293T cell line and EWS cell line A673. Of the novel isoforms CXCR4-3 showed cell membrane localization and a functional response after addition of CXCR4 ligand CXCL12a. CXCR4-4 showed strong cytoplasmic accumulation and no response to ligand treatment. The role of the newly discovered isoforms in CXCR4 signaling is likely to be limited. Our data stresses the importance of functional validation of newly identified isoforms.
Insights
Researchers discovered two new CXCR4 splice variants in Ewing sarcoma cells. One variant showed functional cell membrane activity, while the other accumulated in the cytoplasm, highlighting the need for functional validation of novel isoforms.
Area of Science:
- Molecular Biology
- Cancer Research
- Genomics
Background:
- Chemokine receptor CXCR4 plays a role in tumor progression, angiogenesis, and metastasis.
- Alternative splicing is a key regulatory mechanism for CXCR4 function.
Purpose of the Study:
- To identify and characterize novel coding splice variants of CXCR4 in Ewing sarcoma.
- To validate the protein and functional expression of these new isoforms.
Main Methods:
- Whole transcriptome sequencing to identify splice variants.
- Reverse transcriptase-PCR and Sanger sequencing for validation.
- Ectopic expression in HEK293T and A673 cell lines for protein and functional analysis.
Main Results:
- Two novel CXCR4 splice variants, CXCR4-3 and CXCR4-4, were identified in Ewing sarcoma.
- CXCR4-3 exhibited cell membrane localization and functional response to CXCL12a.
- CXCR4-4 showed cytoplasmic accumulation and lacked functional response to ligand treatment.
Conclusions:
- The newly identified CXCR4 isoforms have distinct cellular localization and functional properties.
- CXCR4-3 may play a role in CXCR4 signaling, whereas CXCR4-4's role appears limited.
- Functional validation is crucial for understanding the significance of newly discovered splice variants.
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