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Updated: May 29, 2026

Flow Cytometry Analysis of Tissue Factor Expression in Human Platelets
Published on: November 22, 2024
Novel protein ADTRP regulates TFPI expression and function in human endothelial cells in normal conditions and in
Cristina Lupu1, Hua Zhu, Narcis I Popescu
1Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK 73104, USA. cristina-lupu@omrf.org
Insights
A newly discovered protein, androgen-dependent TFPI-regulating protein (ADTRP), enhances the endothelium's natural anticoagulant defenses. Androgens boost ADTRP, which in turn increases Tissue Factor Pathway Inhibitor (TFPI) activity, reducing thrombosis risk.
Area of Science:
- Molecular Biology
- Cardiovascular Science
- Endocrinology
Background:
- Thrombosis and cardiovascular disease (CVD) are leading causes of death.
- Low androgen levels are linked to increased CVD and thrombosis risk.
- Endothelial cell (EC) dysfunction, associated with low Tissue Factor Pathway Inhibitor (TFPI), contributes to vascular disease.
Purpose of the Study:
- To identify mechanisms regulating the natural expression of TFPI in endothelial cells.
- To investigate the role of an uncharacterized androgen-responsive protein (C6ORF105) in TFPI regulation.
Main Methods:
- Bioinformatic analysis of NCBI GEO microarrays for gene coexpression.
- In vitro studies using cultured endothelial cells to assess protein function (shRNA, overexpression).
- Biochemical assays, imaging, and Triton X-114 extraction to confirm protein localization and interactions.
Main Results:
- A novel androgen-responsive protein, named ADTRP, was identified and shown to regulate TFPI expression and activity.
- ADTRP colocalizes with TFPI and caveolin-1 in lipid rafts/caveolae within endothelial cells.
- Dihydrotestosterone up-regulates both ADTRP and TFPI, enhancing TFPI's anticoagulant activity in an ADTRP- and caveolin-1-dependent manner.
Conclusions:
- ADTRP is a key regulator of TFPI expression and activity in endothelial cells.
- Androgen-mediated up-regulation of ADTRP enhances endothelial anticoagulant function.
- This ADTRP-TFPI pathway represents a novel mechanism for increasing vascular anticoagulant protection.
Abstract:
Thrombosis and cardiovascular disease (CVD) represent major causes of morbidity and mortality. Low androgen correlates with higher incidence of CVD/thrombosis. Tissue Factor Pathway Inhibitor (TFPI) is the major inhibitor of tissue factor-factor VIIa (TF-FVIIa)-dependent FXa generation. Because endothelial cell (EC) dysfunction leading to vascular disease correlates with low EC-associated TFPI, we sought to identify mechanisms that regulate the natural expression of TFPI. Data mining of NCBI's GEO microarrays revealed strong coexpression between TFPI and the uncharacterized protein encoded by C6ORF105, which is predicted to be multispan, palmitoylated and androgen-responsive. We demonstrate that this protein regulates both the native and androgen-enhanced TFPI expression and activity in cultured ECs, and we named it androgen-dependent TFPI-regulating protein (ADTRP). We confirm ADTRP expression and colocalization with TFPI and caveolin-1 in ECs. ADTRP-shRNA reduces, while over-expression of ADTRP enhances, TFPI mRNA and activity and the colocalization of TF-FVIIa-FXa-TFPI with caveolin-1. Imaging and Triton X-114-extraction confirm TFPI and ADTRP association with lipid rafts/caveolae. Dihydrotestosterone up-regulates TFPI and ADTRP expression, and increases FXa inhibition by TFPI in an ADTRP- and caveolin-1-dependent manner. We conclude that the ADTRP-dependent up-regulation of TFPI expression and activity by androgen represents a novel mechanism of increasing the anticoagulant protection of the endothelium.
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