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阳离子脂质体介导的膦酸酯-肽核酸(PNA)缀合物对HeLa细胞具有亚纳摩尔级的反义活性。

Subnanomolar antisense activity of phosphonate-peptide nucleic acid (PNA) conjugates delivered by cationic lipids to HeLa cells.

作者信息

Shiraishi Takehiko, Hamzavi Ramin, Nielsen Peter E

机构信息

Department of Cellular and Molecular Medicine, Faculty of Health Sciences, University of Copenhagen, The Panum Institute, Blegdamsvej 3c, 2200 Copenhagen N, Denmark.

出版信息

Nucleic Acids Res. 2008 Aug;36(13):4424-32. doi: 10.1093/nar/gkn401. Epub 2008 Jul 2.

Abstract

In the search of facile and efficient methods for cellular delivery of peptide nucleic acids (PNA), we have synthesized PNAs conjugated to oligophosphonates via phosphonate glutamine and bis-phosphonate lysine amino acid derivatives thereby introducing up to twelve phosphonate moieties into a PNA oligomer. This modification of the PNA does not interfere with the nucleic acid target binding affinity based on thermal stability of the PNA/RNA duplexes. When delivered to cultured HeLa pLuc705 cells by Lipofectamine, the PNAs showed dose-dependent nuclear antisense activity in the nanomolar range as inferred from induced luciferase activity as a consequence of pre-mRNA splicing correction by the antisense-PNA. Antisense activity depended on the number of phosphonate moieties and the most potent hexa-bis-phosphonate-PNA showed at least 20-fold higher activity than that of an optimized PNA/DNA hetero-duplex. These results indicate that conjugation of phosphonate moieties to the PNA can dramatically improve cellular delivery mediated by cationic lipids without affecting on the binding affinity and sequence discrimination ability, exhibiting EC(50) values down to one nanomolar. Thus the intracellular efficacy of PNA oligomers rival that of siRNA and the results therefore emphasize that provided sufficient in vivo bioavailability of PNA can be achieved these molecules may be developed into potent gene therapeutic drugs.

摘要

在寻找用于肽核酸(PNA)细胞递送的简便高效方法的过程中,我们通过膦酸酯谷氨酰胺和双膦酸酯赖氨酸氨基酸衍生物合成了与寡膦酸酯缀合的PNA,从而在PNA寡聚物中引入了多达十二个膦酸酯部分。基于PNA/RNA双链体的热稳定性,PNA的这种修饰不会干扰核酸靶标结合亲和力。当通过脂质体转染试剂递送至培养的HeLa pLuc705细胞时,PNA在纳摩尔范围内表现出剂量依赖性的核反义活性,这是通过反义PNA对前体mRNA剪接校正导致的荧光素酶活性诱导推断得出的。反义活性取决于膦酸酯部分的数量,最有效的六双膦酸酯-PNA的活性比优化的PNA/DNA杂合双链体至少高20倍。这些结果表明,膦酸酯部分与PNA的缀合可以显著改善阳离子脂质介导的细胞递送,而不会影响结合亲和力和序列识别能力,其半数有效浓度(EC50)值低至一纳摩尔。因此,PNA寡聚物的细胞内功效可与小干扰RNA(siRNA)相媲美,因此结果强调,如果能够实现PNA足够的体内生物利用度,这些分子可能会被开发成为有效的基因治疗药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f961/2490735/ec08bc6a7b3e/gkn401f1.jpg

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