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DNA i-Motif 的化学生物调控用于纳米生物技术和治疗学。

Chemical Regulation of DNA i-Motifs for Nanobiotechnology and Therapeutics.

机构信息

School of Chemical Sciences, Indian Association for the Cultivation of Science, Jadavpur, Kolkata-, 700032, India.

出版信息

Angew Chem Int Ed Engl. 2019 Mar 4;58(10):2942-2957. doi: 10.1002/anie.201813288. Epub 2019 Jan 29.

Abstract

DNA sequences rich in cytosine have the propensity, under acidic pH, to fold into four-stranded intercalated DNA structures called i-motifs. Recent studies have provided significant breakthroughs that demonstrate how chemists can manipulate these structures for nanobiotechnology and therapeutics. The first section of this Minireview discusses the development of advanced functional nanostructures by synthetic conjugation of i-motifs with organic scaffolds and metal nanoparticles and their role in therapeutics. The second section highlights the therapeutic targeting of i-motifs with chemical scaffolds and their significance in biology. For this, first we shed light on the long-lasting debate regarding the stability of i-motifs under physiological conditions. Next, we present a comparative analysis of recently reported small molecules for specifically targeting i-motifs over other abundant DNA structures and modulating their function in cellular systems. These advances provide new insights into i-motif-targeted regulation of gene expression, telomere maintenance, and therapeutic applications.

摘要

富含胞嘧啶的 DNA 序列在酸性 pH 值下倾向于折叠成称为 i-motif 的四链插入 DNA 结构。最近的研究取得了重大突破,证明了化学家如何操纵这些结构用于纳米生物技术和治疗学。这篇综述的第一部分讨论了通过 i-motif 与有机支架和金属纳米粒子的合成共轭来开发先进的功能纳米结构及其在治疗学中的作用。第二部分强调了用化学支架对 i-motif 进行治疗靶向及其在生物学中的意义。为此,我们首先阐明了关于 i-motif 在生理条件下稳定性的长期争论。接下来,我们对最近报道的用于特异性靶向 i-motif 而不是其他丰富 DNA 结构并调节它们在细胞系统中的功能的小分子进行了比较分析。这些进展为 i-motif 靶向调节基因表达、端粒维持和治疗应用提供了新的见解。

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