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首页> 外文期刊>Journal of Medicinal Chemistry >The Importance of Negative Superhelicity in Inducing the Formation of G-Quadruplex and i-Motif Structures in the c-Myc Promoter: Implications for Drug Targeting and Control of Gene Expression
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The Importance of Negative Superhelicity in Inducing the Formation of G-Quadruplex and i-Motif Structures in the c-Myc Promoter: Implications for Drug Targeting and Control of Gene Expression

机译:负超螺旋性在c-Myc启动子中诱导G-四链体和i-基序结构形成的重要性:药物靶向和基因表达控制的意义。

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The importance of DNA supercoiling in transcriptional regulation has been known for many years, and more recently, transcription itself has been shown to be a source of this superhelicity. To mimic the effect of transcriptionally induced negative superhelicity, the G-quadruplex/i-motif-forming region in the c-Myc promoter was incorporated into a supercoiled plasmid. We show, using enzymatic and chemical footprinting, that negative superhelicity facilitates the formation of secondary DNA structures under physiological conditions. Significantly, these structures are not the same as those formed in single-stranded DNA templates. Together with the recently demonstrated role of transcriptionally induced superhelicity in maintaining a mechanosensor mechanism for controlling the firing rate of the c-Myc promoter, we provide a more complete picture of how c-Myc transcription is likely controlled. Last, these physiologically relevant G-quadruplex and i-motif structures, along with the mechanosensor mechanism for control of gene expression, are proposed as novel mechanisms for small molecule targeting of transcriptional control of c-Myc.
机译:DNA超螺旋在转录调控中的重要性已为人所知,最近,转录本身已被证明是这种超螺旋性的来源。为了模拟转录诱导的负超螺旋效应,将c-Myc启动子中的G-四链体/ i-基序形成区域掺入超螺旋质粒中。我们显示,使用酶促和化学足迹法,负超螺旋性促进了生理条件下二级DNA结构的形成。重要的是,这些结构与单链DNA模板中形成的结构不同。连同最近证明的转录诱导的超螺旋作用在维持用于控制c-Myc启动子发射速率的机械传感器机制中的作用,我们提供了如何控制c-Myc转录的更完整的图片。最后,这些生理相关的G-四链体和i-基序结构,以及用于控制基因表达的机械传感器机制,被提出作为靶向c-Myc转录控制的小分子的新机制。

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