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首页> 外文期刊>American Journal of Pathology: Official Publication of the American Association of Pathologists >Tissue Factor Regulation by miR-520g in Primitive Neuronal Brain Tumor Cells A Possible Link between Oncomirs and the Vascular Tumor Microenvironment
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Tissue Factor Regulation by miR-520g in Primitive Neuronal Brain Tumor Cells A Possible Link between Oncomirs and the Vascular Tumor Microenvironment

机译:miR-520g在原始神经元脑肿瘤细胞中的组织因子调控作用可能是发病与血管肿瘤微环境之间的联系

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Pediatric embryonal brain tumors with multilayered rosettes demonstrate a unique oncogenic amplification of the chromosome 19 miRNA cluster, C19MC. Because oncogenic lesions often cause deregulation of vascular effectors, including procoagulant tissue factor (TF), this study explores whether there is a Link between C19MC oncogenic miRNAs (oncomirs) and the coagulant properties of cancer cells, a question previously not studied. In a pediatric embryonal brain tumor tissue microarray, we observed an association between C19MC amplification and reduced fibrin content and TF expression, indicative of reduced procoagulant activity. In medulloblastoma cell Lines (DAOY and UW228) engineered to express miR-520g, a biologically active constituent of the C19MC cluster, we observed reduced IF expression, procoagulant and TF signaling activities (responses to factor VIIa stimulation), and diminished IF emission as cargo of extracellular vesicles. Antimir and Luciferase reporter assays revealed a specific and direct effect of miR-520g on the IF 3' untranslated region. Although the endogenous MIR520G locus is methylated in differentiated cells, exposure of DAOY cells to 5-aza-2'-deoxycytidine or their growth as stem cell like spheres up-regulated endogenous miR-520g with a coincident reduction in TF expression. We propose that the properties of tumors harboring oncomirs may include unique alterations of the vascular microenvironment, including deregulation of TF, with a possible impact on the biology, therapy, and hemostatic adverse effects of both disease progression and treatment.
机译:带有多层花环的小儿胚胎脑肿瘤显示出19号染色体miRNA簇C19MC的独特致癌性扩增。由于致癌性病变通常会导致包括促凝血组织因子(TF)在内的血管效应因子的失控,因此本研究探讨了C19MC致癌性miRNA(oncomirs)与癌细胞的凝血特性之间是否存在联系,这一问题以前没有研究过。在儿科胚胎脑肿瘤组织芯片中,我们观察到C19MC扩增与纤维蛋白含量和TF表达降低之间的关联,表明促凝活性降低。在工程化表达miR-520g(C19MC簇的生物活性成分)的髓母细胞瘤细胞系(DAOY和UW228)中,我们观察到IF表达降低,促凝血和TF信号传导活性降低(对VIIa因子的反应),并且IF货物散发减少细胞外囊泡。 Antimir和荧光素酶报告基因检测揭示了miR-520g对IF 3'非翻译区的特异性和直接作用。尽管内源性MIR520G基因座在分化的细胞中被甲基化,但DAOY细胞暴露于5-氮杂2'-脱氧胞苷或它们作为干细胞球体的生长上调了内源性miR-520g,同时TF表达降低。我们建议,隐匿性肿瘤的性质可能包括血管微环境的独特改变,包括TF的失调,可能对疾病进展和治疗的生物学,治疗和止血副作用产生影响。

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