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血小板衍生生长因子受体 β 核心启动子核酸酶超敏元件中重叠 G-四链体和 i- 基序的后果可以解释突变的意外影响,并为小分子选择性靶向这两种结构以下调基因表达提供机会。

The Consequences of Overlapping G-Quadruplexes and i-Motifs in the Platelet-Derived Growth Factor Receptor β Core Promoter Nuclease Hypersensitive Element Can Explain the Unexpected Effects of Mutations and Provide Opportunities for Selective Targeting of Both Structures by Small Molecules To Downregulate Gene Expression.

机构信息

College of Pharmacy, University of Arizona , 1703 East Mabel Street, Tucson, Arizona 85721, United States.

College of Medicine, University of Arizona , 1501 North Campbell Avenue, Tucson, Arizona 85724, United States.

出版信息

J Am Chem Soc. 2017 Jun 7;139(22):7456-7475. doi: 10.1021/jacs.6b10028. Epub 2017 May 19.

Abstract

The platelet-derived growth factor receptor β (PDGFR-β) signaling pathway is a validated and important target for the treatment of certain malignant and nonmalignant pathologies. We previously identified a G-quadruplex-forming nuclease hypersensitive element (NHE) in the human PDGFR-β promoter that putatively forms four overlapping G-quadruplexes. Therefore, we further investigated the structures and biological roles of the G-quadruplexes and i-motifs in the PDGFR-β NHE with the ultimate goal of demonstrating an alternate and effective strategy for molecularly targeting the PDGFR-β pathway. Significantly, we show that the primary G-quadruplex receptor for repression of PDGFR-β is the 3'-end G-quadruplex, which has a GGA sequence at the 3'-end. Mutation studies using luciferase reporter plasmids highlight a novel set of G-quadruplex point mutations, some of which seem to provide conflicting results on effects on gene expression, prompting further investigation into the effect of these mutations on the i-motif-forming strand. Herein we characterize the formation of an equilibrium between at least two different i-motifs from the cytosine-rich (C-rich) sequence of the PDGFR-β NHE. The apparently conflicting mutation results can be rationalized if we take into account the single base point mutation made in a critical cytosine run in the PDGFR-β NHE that dramatically affects the equilibrium of i-motifs formed from this sequence. We identified a group of ellipticines that targets the G-quadruplexes in the PDGFR-β promoter, and from this series of compounds, we selected the ellipticine analog GSA1129, which selectively targets the 3'-end G-quadruplex, to shift the dynamic equilibrium in the full-length sequence to favor this structure. We also identified a benzothiophene-2-carboxamide (NSC309874) as a PDGFR-β i-motif-interactive compound. In vitro, GSA1129 and NSC309874 downregulate PDGFR-β promoter activity and transcript in the neuroblastoma cell line SK-N-SH at subcytotoxic cell concentrations. GSA1129 also inhibits PDGFR-β-driven cell proliferation and migration. With an established preclinical murine model of acute lung injury, we demonstrate that GSA1129 attenuates endotoxin-mediated acute lung inflammation. Our studies underscore the importance of considering the effects of point mutations on structure formation from the G- and C-rich sequences and provide further evidence for the involvement of both strands and associated structures in the control of gene expression.

摘要

血小板衍生生长因子受体 β (PDGFR-β) 信号通路是治疗某些恶性和非恶性疾病的一个经过验证的重要靶点。我们之前在人类 PDGFR-β 启动子中发现了一个形成 G-四链体的核酸酶超敏元件 (NHE),该元件可能形成四个重叠的 G-四链体。因此,我们进一步研究了 G-四链体和 i- 发夹在 PDGFR-β NHE 中的结构和生物学作用,最终目标是证明一种替代的、有效的靶向 PDGFR-β 途径的分子策略。重要的是,我们表明,抑制 PDGFR-β 的主要 G-四链体受体是 3'端 G-四链体,其 3'端具有 GGA 序列。使用荧光素酶报告质粒的突变研究突出了一组新的 G-四链体点突变,其中一些似乎对基因表达产生了相互矛盾的影响,这促使我们进一步研究这些突变对 i- 发夹形成链的影响。在此,我们描述了来自 PDGFR-β NHE 的富含胞嘧啶 (C-rich) 序列的至少两种不同 i- 发夹之间形成平衡的情况。如果我们考虑到 PDGFR-β NHE 中关键胞嘧啶序列中发生的单个碱基点突变,这些看似相互矛盾的突变结果就可以得到合理化,该突变显著影响了来自该序列的 i- 发夹的平衡。我们鉴定了一组靶向 PDGFR-β 启动子中 G-四链体的椭圆体,从该系列化合物中,我们选择了选择性靶向 3'端 G-四链体的椭圆体类似物 GSA1129,以将全长序列中的动态平衡转移到有利于这种结构。我们还鉴定了苯并噻吩-2-甲酰胺 (NSC309874) 作为 PDGFR-β i- 发夹相互作用化合物。在体外,GSA1129 和 NSC309874 在亚细胞毒性细胞浓度下下调神经母细胞瘤 SK-N-SH 细胞系中的 PDGFR-β 启动子活性和转录物。GSA1129 还抑制 PDGFR-β 驱动的细胞增殖和迁移。在建立的急性肺损伤临床前小鼠模型中,我们证明 GSA1129 可减轻内毒素介导的急性肺炎症。我们的研究强调了考虑点突变对 G-和 C- 丰富序列结构形成的影响的重要性,并进一步证明了两条链及其相关结构在控制基因表达中的参与。

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