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SLCO4A1 expression is associated with activated inflammatory pathways in high-grade serous ovarian cancer
Stephanie Koller1, Jonatan Kendler1, Jasmine Karacs1
1Department of Obstetrics and Gynecology, Translational Gynecology Group, Comprehensive Cancer Center, Medical University of Vienna, Vienna, Austria.
Abstract:
Patients with high-grade serous ovarian cancer (HGSOC) have a very poor overall survival. Current therapeutic approaches do not bring benefit to all patients. Although genetic alterations and molecular mechanisms are well characterized, the molecular pathological conditions are poorly investigated. Solute carrier organic anion transporter family member 4A1 (SLCO4A1) encodes OATP4A1, which is an uptake membrane transporter of metabolic products. Its expression may influence various signaling pathways associated with the molecular pathophysiological conditions of HGSOC and consequently tumor progression. RNA sequencing of 33 patient-derived HGSOC cell lines showed that SLCO4A1 expression was diverse by individual tumors, which was further confirmed by RT-qPCR, Western blotting and immunohistochemistry. Gene Set Enrichment Analysis revealed that higher SLCO4A1 level was associated with inflammation-associated pathways including NOD-like receptor, adipocytokine, TALL1, CD40, NF-κB, and TNF-receptor 2 signaling cascades, while low SLCO4A1 expression was associated with the mitochondrial electron transport chain pathway. The overall gene expression pattern in all cell lines was specific to each patient and remained largely unchanged during tumor progression. In addition, genes encoding ABCC3 along with SLCO4A1-antisense RNA 1, were associated with higher expression of the SLCO4A1, indicating their possible involvement in inflammation-associated pathways that are downstream to the prostaglandin E2/cAMP axis. Taken together, increased SLCO4A1/OATP4A1 expression is associated with the upregulation of specific inflammatory pathways, while the decreased level is associated with mitochondrial dysfunction. These molecular pathophysiological conditions are tumor specific and should be taken into consideration by the development of therapies against HGSOC.
Insights
High-grade serous ovarian cancer (HGSOC) shows diverse molecular profiles. Solute carrier organic anion transporter family member 4A1 (SLCO4A1) expression links to inflammation or mitochondrial dysfunction, impacting HGSOC progression and therapy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- High-grade serous ovarian cancer (HGSOC) has poor survival rates, with current treatments benefiting only a subset of patients.
- While genetic alterations are known, the molecular pathological landscape of HGSOC remains underexplored.
- Solute carrier organic anion transporter family member 4A1 (SLCO4A1), encoding OATP4A1, is an uptake transporter whose expression may modulate HGSOC pathophysiology.
Purpose of the Study:
- To investigate the role of SLCO4A1 expression in the molecular pathology of HGSOC.
- To correlate SLCO4A1 levels with specific signaling pathways and cellular functions in HGSOC.
- To assess the potential of SLCO4A1 as a therapeutic target or biomarker in HGSOC.
Main Methods:
- RNA sequencing was performed on 33 patient-derived HGSOC cell lines.
- Quantitative real-time PCR (RT-qPCR), Western blotting, and immunohistochemistry were used for validation.
- Gene Set Enrichment Analysis (GSEA) was employed to identify associated molecular pathways.
Main Results:
- SLCO4A1 expression varied significantly across individual HGSOC tumors.
- Higher SLCO4A1 levels correlated with inflammation-associated pathways (e.g., NOD-like receptor, NF-κB, TNF-receptor signaling).
- Lower SLCO4A1 expression was linked to the mitochondrial electron transport chain pathway, indicating distinct molecular subtypes.
Conclusions:
- SLCO4A1/OATP4A1 expression is associated with distinct molecular pathophysiological states in HGSOC: inflammation or mitochondrial dysfunction.
- These patient-specific molecular profiles remain stable during tumor progression.
- Understanding these SLCO4A1-associated pathways is crucial for developing targeted HGSOC therapies.
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