射击练习:用DNA小凹槽结合物瞄准卫星重复序列。

Guillaume Susbielle, Roxane Blattes, Vanessa Brevet, Caroline Monod, Emmanuel Käs
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引用次数: 19

摘要

近年来,在开发针对DNA小凹槽的小分子方面取得了很大进展。惊人的进展已经导致合成分子的设计,识别与真核转录因子的亲和性相当的特定DNA序列。这使得在体内调节或抑制DNA/蛋白质相互作用成为可能,这是开发抗基因治疗通用策略的重要一步。抗寄生虫药物的例子也表明,合成分子可以根据其偏碱基组成更广泛地靶向大部分基因组,从而影响对细胞活力至关重要的各种细胞功能。这为开发基于与广泛基因组靶点(如与细胞增殖所必需的染色质的结构或结构成分相关的卫星重复序列)的选择性相互作用的方法提供了基本原理。以黑腹果蝇模型系统为例,我们回顾了合成聚酰胺或二胺的使用,这些聚酰胺或二胺结合DNA小凹槽,可以作为高选择性的药物,能够干扰真核生物基因组中富含A+ t的重复序列中发生的特定蛋白质/DNA相互作用。细胞蛋白的卫星定位,结合DNA的小槽通过域,如AT钩基是高度敏感的这些分子。这些蛋白质和它们的合成模拟物之间竞争的一个主要后果是改变了核定位和蛋白质的功能,如拓扑异构酶II,这是抗癌药物的主要靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Target practice: aiming at satellite repeats with DNA minor groove binders.

Much progress has been made in recent years in developing small molecules that target the minor groove of DNA. Striking advances have led to the design of synthetic molecules that recognize specific DNA sequences with affinities comparable to those of eukaryotic transcription factors. This makes it feasible to modulate or inhibit DNA/protein interactions in vivo, a major step towards the development of general strategies of anti-gene therapy. Examples from anti-parasitic drugs also suggest that synthetic molecules can affect a variety of cellular functions crucial to cell viability by more generally targeting vast portions of genomes based on their biased base composition. This provides a rationale for developing approaches based on selective interactions with broad genomic targets such as satellite repeats that are associated with structural or architectural components of chromatin essential for cellular proliferation. Using examples drawn from the Drosophila melanogaster model system, we review here the use of synthetic polyamides or diamidines that bind the DNA minor groove and can be used as highly selective agents capable of interfering with specific protein/DNA interactions that occur in A+T-rich repeated sequences that constitute a significant portion of eukaryotic genomes. The satellite localization of cellular proteins that bind the minor groove of DNA via domains such as the AT hook motif is highly sensitive to these molecules. A major consequence of the competition between these proteins and their synthetic mimics is an alteration of the nuclear localization and function of proteins such as topoisomerase II, a major target of anti-cancer drugs.

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