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反基因寡核苷酸的治疗应用前景。

Prospects for the therapeutic use of antigene oligonucleotides.

作者信息

Maher L J

机构信息

Department of Biochemistry and Molecular Biology, Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

Cancer Invest. 1996;14(1):66-82. doi: 10.3109/07357909609018437.

Abstract

An outgrowth of classic nucleic acid interaction studies, oligonucleotide-directed triple helix formation is a unique method for creating highly specific chemical ligands that recognize and bind to particular sequences of duplex DNA. Under permissive conditions, these oligonucleotide-based compounds can approach or exceed the binding affinity and sequence specificity of natural DNA-binding proteins. Triple helix recognition has been found to be useful in certain cell-free applications including precise chromosome fragmentation. It has been proposed that such oligonucleotides could also form the basis for gene-targeted (antigene) drugs that might repress transcription from undesired genes in living cells. However, current strategies for oligonucleotide-directed triple helix formation suffer from important constraints involving requirements for stabilizing binding conditions, restrictions on permitted target sequences, and inefficient nuclear delivery of oligonucleotides. Implementation of oligonucleotide-directed triple helix formation as a viable approach to cancer therapy must therefore await clever solutions to a series of fascinating problems.

摘要

作为经典核酸相互作用研究的一个衍生领域,寡核苷酸定向三链螺旋形成是一种独特的方法,用于创建能识别并结合双链DNA特定序列的高特异性化学配体。在适宜条件下,这些基于寡核苷酸的化合物可以接近或超过天然DNA结合蛋白的结合亲和力和序列特异性。已发现三链螺旋识别在某些无细胞应用中很有用,包括精确的染色体片段化。有人提出,此类寡核苷酸还可作为基因靶向(反基因)药物的基础,这类药物可能抑制活细胞中不需要基因的转录。然而,目前用于寡核苷酸定向三链螺旋形成的策略存在一些重要限制,包括对稳定结合条件的要求、对允许的靶序列的限制以及寡核苷酸向细胞核递送效率低下。因此,要将寡核苷酸定向三链螺旋形成作为一种可行的癌症治疗方法加以应用,必须等待一系列有趣问题的巧妙解决方案。

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