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Selective inhibition of the human tie-1 promoter with triplex-forming oligonucleotides targeted to ets binding sites

机译:靶向ets结合位点的三链形成寡核苷酸对人tie-1启动子的选择性抑制

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摘要

The Tie receptors (Tie-1 and Tie-2/Tek) are essential for angiogenesis and vascular remodeling/integrity. Tie receptors are up-regulated in tumor-associated endothelium, and their inhibition disrupts angiogenesis and can prevent tumor growth as a consequence. To investigate the potential of anti-gene approaches to inhibit tie gene expression for anti-angiogenic therapy, we have examined triple-helical (triplex) DNA formation at 2 tandem Ets transcription factor binding motifs (designated E-1 and E-2) in the human tie-1 promoter. Various tie-1 promoter deletion/mutation luciferase reporter constructs were generated and transfected into endothelial cells to examine the relative activities of E-1 and E-2. The binding of antiparallel and parallel (control) purine motif oligonucleotides (21-22 bp) targeted to E-1 and E-2 was assessed by plasmid DNA fragment binding and electrophoretic mobility shift assays. Triplex-forming oligonucleotides were incubated with tie-1 reporter constructs and transfected into endothelial cells to determine their activity. The Ets binding motifs in the E-1 sequence were essential for human tie-1 promoter activity in endothelial cells, whereas the deletion of E-2 had no effect. Antiparallel purine motif oligonucleotides targeted at E-1 or E-2 selectively formed strong triplex DNA (K(d) approximately 10(-7) M) at 37 degrees C. Transfection of tie-1 reporter constructs with triplex DNA at E-1, but not E-2, specifically inhibited tie-1 promoter activity by up to 75% compared with control oligonucleotides in endothelial cells. As similar multiple Ets binding sites are important for the regulation of several endothelial-restricted genes, this approach may have broad therapeutic potential for cancer and other pathologies involving endothelial proliferation/dysfunction.
机译:Tie受体(Tie-1和Tie-2 / Tek)对于血管生成和血管重塑/完整性至关重要。领带受体在肿瘤相关的内皮细胞中上调,其抑制作用会破坏血管生成,从而阻止肿瘤的生长。为了研究抗基因方法抑制领带基因表达的抗血管生成疗法的潜力,我们检查了两个串联的Ets转录因子结合基序(分别为E-1和E-2)处的三螺旋(三重)DNA形成。人tie-1启动子。产生各种tie-1启动子缺失/突变荧光素酶报告基因构建体,并将其转染到内皮细胞中以检查E-1和E-2的相对活性。通过质粒DNA片段结合和电泳迁移率迁移分析评估靶向E-1和E-2的反平行和平行(对照)嘌呤基序寡核苷酸(21-22 bp)的结合。将三链体形成的寡核苷酸与tie-1报告基因构建体一起温育,然后转染到内皮细胞中以确定其活性。 E-1序列中的Ets结合基序对于内皮细胞中人tie-1启动子的活性至关重要,而E-2的缺失则没有作用。靶向E-1或E-2的反平行嘌呤基序寡核苷酸在37摄氏度下选择性形成了强三链DNA(K(d)约10(-7)M).tie-1报告基因构建体在E-1处用三链DNA转染,但不是E-2,与内皮细胞中的对照寡核苷酸相比,特异性抑制tie-1启动子的活性高达75%。由于相似的多个Ets结合位点对于调节几种内皮细胞限制性基因很重要,因此这种方法对于癌症和其他涉及内皮细胞增殖/功能异常的病理可能具有广泛的治疗潜力。

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