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Intragenic G-quadruplex structure formed in the human CD133 and its biological and translational relevance

机译:人类CD133中形成的基因内G-四链体结构及其生物学和翻译相关性

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摘要

Cancer stem cells (CSCs) have been identified in several solid malignancies and are now emerging as a plausible target for drug discovery. Beside the questionable existence of CSCs specific markers, the expression of CD133 was reported to be responsible for conferring CSC aggressiveness. Here, we identified two G-rich sequences localized within the introns 3 and 7 of the CD133 gene able to form G-quadruplex (G4) structures, bound and stabilized by small molecules. We further showed that treatment of patient-derived colon CSCs with G4-interacting agents triggers alternative splicing that dramatically impairs the expression of CD133. Interestingly, this is strongly associated with a loss of CSC properties, including self-renewing, motility, tumor initiation and metastases dissemination. Notably, the effects of G4 stabilization on some of these CSC properties are uncoupled from DNA damage response and are fully recapitulated by the selective interference of the CD133 expression.
机译:癌症干细胞(CSC)已在数种实体恶性肿瘤中得到鉴定,现在正逐渐成为药物发现的合理靶标。除了存在可疑的CSCs特异性标记外,据报道CD133的表达还可以赋予CSC攻击性。在这里,我们确定了两个富含G的序列,它们位于CD133基因的内含子3和7中,能够形成由小分子结合并稳定的G-四链体(G4)结构。我们进一步表明,使用G4相互作用剂治疗患者来源的结肠CSC会触发选择性剪接,从而极大地削弱CD133的表达。有趣的是,这与CSC特性的丧失密切相关,包括自我更新,活动能力,肿瘤起始和转移扩散。值得注意的是,G4稳定化对某些CSC特性的影响与DNA损伤反应无关,并通过CD133表达的选择性干扰而完全概括。

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