Best minimally modified antisense oligonucleotides according to cell nuclease activity.

T. Samani, B. Jollès, A. Laigle
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引用次数: 27

Abstract

Minimally modified oligonucleotides belong to the second-generation antisense class. They are phosphodiester oligonucleotides with a minimum of phosphorothioate linkages in order to be protected against serum and cellular exonucleases and endonucleases. They activate RNase H, have weak interactions with proteins, and have thus a better antisense efficiency. Two of them have been designed from an all-phosphorothioate antisense oligonucleotide directed against mdrl-expressing cells. They are protected against serum and cellular enzymatic degradation by the self-forming hairpin d(GCGAAGC) at their 3'-end and by judiciously located phosphorothioate residues, depending on the cellular composition in exonucleases or endonucleases. Besides their already demonstrated ability to cleave pyrimidine sites, endonucleases show some specificity for CpG sites. Their activity is hindered if specific sites are involved in secondary structure as hairpin.
根据细胞核酸酶活性,最佳的最小修饰反义寡核苷酸。
最小修饰寡核苷酸属于第二代反义类。它们是磷酸二酯寡核苷酸,具有最少的磷硫键,以防止血清和细胞的外切核酸酶和内切核酸酶。它们激活RNase H,与蛋白质有弱相互作用,因此具有较好的反义效率。其中两个是由全硫代反义寡核苷酸设计的,直接针对表达mdrl的细胞。它们通过3'端的自形成发夹d(GCGAAGC)和根据核酸外切酶或核酸内切酶的细胞组成合理定位的硫代残基来防止血清和细胞酶降解。除了它们已经证明的切割嘧啶位点的能力外,内切酶还显示出对CpG位点的一些特异性。如果在二级结构中有特定的位点如发夹,则会阻碍它们的活性。
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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