Triplex-forming oligonucleotides as potential tools for modulation of gene expression.

Faye A Rogers, Janice A Lloyd, Peter M Glazer
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引用次数: 56

Abstract

Triplex-forming oligonucleotides (TFOs) bind in the major groove of duplex DNA at polypurine/ polypyrimidine stretches in a sequence-specific manner. The binding specificity of TFOs makes them potential candidates for use in directed genome modification. A number of studies have shown that TFOs can introduce permanent changes in a target sequence by stimulating a cell's inherent repair pathways. TFOs have also been demonstrated to inhibit gene expression providing a possible role for these compounds in cancer therapy. This review summarizes the dual roles of TFOs for use in delivering DNA reactive compounds to a specific site in the genome or for introducing permanent changes in the target sequence through the introduction of an altered helical structure. In addition to compiling the ways in which TFOs have been successfully utilized, this review will explore conflicting reports of TFO bioactivity focusing on the variables which affect the efficacy in vitro of TFO mediated genomic modification which in turn may represent the obstacles encountered using TFOs to modulate gene expression in vivo.

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三聚体形成寡核苷酸作为调控基因表达的潜在工具。
三聚体形成的寡核苷酸(TFOs)以序列特异性的方式结合在多嘌呤/多嘧啶延伸处的双链DNA的主要凹槽中。tfo的结合特异性使其成为定向基因组修饰的潜在候选物。许多研究表明,tfo可以通过刺激细胞固有的修复途径,在靶序列中引入永久性的变化。tfo也被证明可以抑制基因表达,这为这些化合物在癌症治疗中提供了可能的作用。这篇综述总结了tfo的双重作用:将DNA反应性化合物传递到基因组的特定位点,或通过引入改变的螺旋结构在目标序列中引入永久性变化。除了编译TFO成功利用的方法外,本文还将探讨TFO生物活性的相互矛盾的报道,重点关注影响TFO介导的基因组修饰体外功效的变量,这些变量反过来可能代表使用TFO调节体内基因表达所遇到的障碍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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