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pH-driven conformational switch between non-canonical DNA structures in a C-rich domain of EGFR promoter

机译:EGFR启动子富C结构域中非规范DNA结构之间的pH驱动构象转换

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摘要

EGFR is an oncogene that encodes for a trans-membrane tyrosine kinase receptor. Its mis-regulation is associated to several human cancers that, consistently, can be treated by selective tyrosine kinase inhibitors. The proximal promoter of EGFR contains a G-rich domain located at 272 bases upstream the transcription start site. We previously proved it folds into two main interchanging G-quadruplex structures, one of parallel and one of hybrid topology. Here we present the first evidences supporting the ability of the complementary C-rich strand (EGFR-272_C) to assume an intramolecular i-Motif (iM) structure that, according to the experimental conditions (pH, presence of co-solvent and salts), can coexist with a different arrangement we referred to as a hairpin. The herein identified iM efficiently competes with the canonical pairing of the two complementary strands, indicating it as a potential novel target for anticancer therapies. A preliminary screening for potential binders identified some phenanthroline derivatives as able to target EGFR-272_C at multiple binding sites when it is folded into an iM.
机译:EGFR是一种癌基因,编码跨膜酪氨酸激酶受体。它的错误调节与几种人类癌症有关,这些人类癌症一贯可以通过选择性酪氨酸激酶抑制剂治疗。 EGFR的近端启动子包含位于转录起始位点上游272个碱基处的富G结构域。我们以前证明了它可以折叠成两个主要的互换G-四重结构,其中之一是并行拓扑,另一个是混合拓扑。在这里,我们提供了第一个证据,证明根据实验条件(pH,共溶剂和盐的存在),互补的富C链(EGFR-272_C)呈现分子内i-Motif(iM)结构的能力。 ,可以与我们称为发夹的其他排列方式共存。本文鉴定的iM与两条互补链的经典配对有效竞争,表明其是抗癌疗法的潜在新靶标。初步筛选潜在的结合剂后,将一些菲咯啉衍生物折叠成iM后能够将EGFR-272_C靶向多个结合位点。

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