首页> 外文期刊>Molecular cancer therapeutics >The proximal promoter region of the human vascular endothelial growth factor gene has a G-quadruplex structure that can be targeted by G-quadruplex-interactive agents.
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The proximal promoter region of the human vascular endothelial growth factor gene has a G-quadruplex structure that can be targeted by G-quadruplex-interactive agents.

机译:人血管内皮生长因子基因的近端启动子区域具有G-四链体结构,该结构可被G-四链体相互作用剂靶向。

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Previous studies on the functional analysis of the human vascular endothelial growth factor (VEGF) promoter using the full-length VEGF promoter reporter revealed that the proximal 36-bp region (-85 to -50 relative to transcription initiation site) is essential for basal or inducible VEGF promoter activity in several human cancer cells. This region consists of a polypurine (guanine) tract that contains four runs of at least three contiguous guanines separated by one or more bases, thus conforming to a general motif capable of forming an intramolecular G-quadruplex. Here, we show that the G-rich strand in this region is able to form an intramolecular propeller-type parallel-stranded G-quadruplex structure in vitro by using the electrophoretic mobility shift assay, dimethyl sulfate footprinting technique, the DNA polymerase stop assay, circular dichroism spectroscopy, and computer-aided molecular modeling. Two well-known G-quadruplex-interactive agents, TMPyP4 and Se2SAP, stabilize G-quadruplex structuresformed by this sequence in the presence of a potassium ion, although Se2SAP is at least 10-fold more effective in binding to the G-quadruplex than TMPyP4. Between these two agents, Se2SAP better suppresses VEGF transcription in different cancer cell lines, including HEC1A and MDA-MB-231. Collectively, our results provide evidence that specific G-quadruplex structures can be formed in the VEGF promoter region, and that the transcription of this gene can be controlled by ligand-mediated G-quadruplex stabilization. Our results also provide further support for the idea that G-quadruplex structures may play structural roles in vivo and therefore might provide insight into novel methodologies for rational drug design.
机译:先前使用全长VEGF启动子报告子对人血管内皮生长因子(VEGF)启动子进行功能分析的研究表明,近端36 bp区域(相对于转录起始位点为-85至-50)对于基础或几种人类癌细胞中可诱导的VEGF启动子活性。该区域由聚嘌呤(鸟嘌呤)区组成,该区包含至少三个连续的鸟嘌呤(由一个或多个碱基分隔)的四行,因此符合能够形成分子内G四联体的一般基序。在这里,我们通过使用电泳迁移率变动分析,硫酸二甲酯足迹技术,DNA聚合酶终止分析,在体外显示该区域中的富G链能够在体外形成分子内螺旋桨型平行链G四链体结构,圆二色光谱和计算机辅助分子建模。两种众所周知的G-四链体相互作用剂TMPyP4和Se2SAP在钾离子存在下稳定由该序列形成的G-四链体结构,尽管Se2SAP结合G-四链体的效率比TMPyP4至少高10倍。 。在这两种药物之间,Se2SAP可以更好地抑制包括HEC1A和MDA-MB-231在内的不同癌细胞系中的VEGF转录。总的来说,我们的结果提供了证据,表明可以在VEGF启动子区域形成特定的G-四链体结构,并且该基因的转录可以通过配体介导的G-四链体稳定来控制。我们的结果也为G四联体结构可能在体内发挥结构作用这一观点提供了进一步的支持,因此可能为理性药物设计的新方法提供了见识。

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