RNA作为药物靶标:来自I组内含子RNA的反式剪接核酶催化活性的最新专利。

Irudayam Maria Johnson
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引用次数: 7

摘要

RNA在基因表达、转运、自剪接催化活性等重要细胞事件中的重要性,使其成为药物和其他特异性RNA结合配体的替代靶标。RNA靶标具有重要意义,因为用治疗方法靶向DNA会通过损害基因的基本功能而更快地导致耐药性和严重的副作用。然而,RNA独特的结构特征促进了两种不同的靶向方法:1)靶向RNA(核酶)的催化活性;2)利用核酶的催化功能靶向我们感兴趣的其他细胞RNA。第一种策略是通过小分子药物或RNA结合物抑制核酶催化。这将是非常有效的,就特定RNA结合物的独特目标而言,因为核酶存在于某些病原体中,而在人类中不存在。除了通过治疗药物靶向核酶外,第二种策略探索核酶本身可以作为治疗药物,通过反式剪接活性来纠正有缺陷的细胞RNA,并且与遗传性疾病的任何基因治疗一样著名,或者它可以作为“基因抑制剂”,因为它可以切割目标RNA。在这个系列中,许多反式剪接核酶因其重要的催化活性而被设计并获得专利。然而,这里的重点是最近专利的I族内含子衍生的反式剪接核酶,并讨论了它们作为治疗药物的催化功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RNA as a drug target: recent patents on the catalytic activity of trans-splicing ribozymes derived from group I intron RNA.

The importance of RNA in vital cellular events like gene expression, transport, self-splicing catalytic activity etc., renders them an alternative target for drugs and other specific RNA binding ligands. RNA targets gain significance for the fact that targeting DNA with therapeutics sooner leads to drug resistance and severe side effects by impairing essential function of the genes. However the unique structural features of the RNA facilitate targeting in two different approaches: 1) targeting the catalytic activity of the RNA (ribozyme) 2) exploiting the catalytic functions of ribozyme to target other cellular RNA of our interest. The first strategy leads to the inhibition of ribozyme catalysis by small molecule drugs or RNA binders. This would be very much effective in terms of unique target for specific RNA binders as ribozymes are present in certain pathogens and nonexistent in humans. Apart from targeting ribozymes by therapeutics the second strategy explores that ribozymes by itself can act as therapeutics to correct the defective cellular RNA by trans-splicing activity and are renowned as equivalent as that of any gene therapy for genetic disorders or it can be a "gene inhibitor" as it can cleave the target RNA. In this series many trans-splicing ribozymes are engineered and patented for their vital catalytic activity. However here the focus has been given to recent patents on group I intron-derived trans-splicing ribozymes, and their catalytic functions as therapeutics are discussed.

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