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Taavo Tenno

Publications and source records attributed to Taavo Tenno.

3 recordsLinked to original sources

Genetic variations in the tissue factor gene are associated with clinical outcome in acute coronary syndrome and expression levels in human monocytes.

OBJECTIVE: Tissue factor (TF) has, among other factors, a prominent role in acute coronary syndrome (ACS). Our goal was to investigate whether single nucleotide polymorphisms (SNP) in the TF gene (F3) are associated with plasma TF, risk, and outcome in patients with ACS. Moreover, we wanted to investigate the impact of associated TF SNPs on mRNA production in human monocytes. METHODS AND RESULTS: In 725 patients with ACS [Fragmin and Fast Revascularization during Instability in Coronary Artery Disease II (FRISC-II) study] and 376 controls, 13 SNPs were genotyped and plasma TF measured. Thereafter, the 5466 A>G and the -1812 C>T were genotyped among all of the FRISC-II participants (n=3143) and assessed concerning clinical outcome. Associated SNPs were genotyped in 92 healthy blood donors for comparison of TF activity and TF mRNA expression. None of the SNPs were associated with patient/control status. The 5466 A>G SNP was associated with cardiovascular death (odds ratio, 1.8; P=0.025). The CG haplotype by -1812 C>T and 5466 A>G was associated with a 3-fold increased risk of death (P<0.001). TF mRNA and basal TF activity was significantly lower among 5466 AG carriers, whereas the increase in monocyte TF activity on lipopolysaccharide stimulation was significantly stronger (P=0.04). CONCLUSIONS: The 5466 AG genotype is a novel predictor of cardiovascular death in ACS and may act through a high TF response.

Acute Disease↗

A quantitative real-time PCR method for tissue factor mRNA.

BACKGROUND: Tissue factor (TF) is primarily known for its function to initiate blood coagulation. The range of in vivo expression of TF is wide and requires a dynamic assay for monitoring. A general method for TF mRNA quantitation that is dynamic, sensitive and applicable to a variety of experimental systems or clinical situations is therefore desirable. OBJECTIVES: To develop a method for sensitive and dynamic quantitation of TF mRNA in human blood cells. METHODS: TF mRNA expression was analysed and evaluated in monocyte isolations, in whole blood (healthy volunteers and patients scheduled for percutaneous coronary intervention, PCI) and in a panel of human cell lines. RNA was extracted, reverse transcribed and subjected to real-time PCR amplification, according to the TaqMan technology. A TF plasmid was constructed as calibrator of the assay. Two housekeeping genes used as endogenous controls for cDNA quality and integrity were evaluated. RESULTS: The assay was linear by seven orders of magnitude and detected down to 10(2) copies of the TF plasmid. The coefficient of variation was 4% intra-assay and 28% between the assays when using beta2MG as endogenous control. The beta-actin gene expression was induced by treatment with lipopolysaccharide (LPS) in blood leukocytes and could not be used as an endogenous control. However, beta2MG showed only minor variations upon treatment with LPS. The TF mRNA and antigen expression, measured in a Western blot, correlated well (R(2)=0.903) in a panel of 11 human cell lines. CONCLUSIONS: We have established a method for sensitive and dynamic quantitation of TF mRNA in experimental systems and for clinical situations.

Base Sequence↗

PML/RARalpha plays a role for basal activity and retinoid-induced repression of the tissue factor promoter in acute promyelocytic leukemia cells.

Constitutive expression of tissue factor (TF) by acute promyelocytic leukemia (APL) cells may contribute to thrombotic complications. In this study we examined the transcriptional mechanisms of all-trans retinoic acid (ATRA)-induced down-regulation of TF in the APL cell line NB4, by analysis of stable clones expressing the luciferase gene under the control of 5' flanking regions of the TF gene. We show that the TF promoter is constitutively active in NB4 cells, and that ATRA induces rapid suppression of the promoter. Basal activity and ATRA-induced suppression of TF promoter is determined by the proximal -383 to +121 bp of the promoter. Electrophoretic mobility shift assays demonstrate the binding of Fos/Jun complexes to two TF promoter AP-1 sites in this region. Both complexes were suppressed by ATRA treatment. The ectopic expression of the APL-specific PML/RARalpha oncoprotein in U-937 cells results in induction of TF mRNA and promoter activity. Interestingly, this PML/RARalpha-mediated increase in TF promoter activity is sensitive to ATRA treatment. These data indicate that TF expression in APL cells is exacerbated by the presence of the PML/RARalpha fusion protein, and implicates the loss of Fos/Jun binding to the TF promoter in ATRA-induced suppression of TF.

Cell Line, Tumor↗