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包含2'-C,4'-C-乙撑氧基桥连胸苷衍生物的寡核苷酸的合成、双链形成能力、酶稳定性及体外反义活性

Synthesis, duplex-forming ability, enzymatic stability, and in vitro antisense potency of oligonucleotides including 2'-C,4'-C-ethyleneoxy-bridged thymidine derivatives.

作者信息

Osawa Takashi, Sawamura Motoki, Wada Fumito, Yamamoto Tsuyoshi, Obika Satoshi, Hari Yoshiyuki

机构信息

Faculty of Pharmaceutical Sciences, Tokushima Bunri University, Nishihama, Yamashiro-cho, Tokushima 770-8514, Japan.

出版信息

Org Biomol Chem. 2017 May 10;15(18):3955-3963. doi: 10.1039/c7ob00698e.

Abstract

We synthesized thymidine derivatives of 2'-C,4'-C-ethyleneoxy-bridged 2'-deoxyribonucleic acids with an 8'-methyl group ((R)-Me-EoDNA and (S)-Me-EoDNA) and without any substituent (EoDNA). Oligonucleotides including these EoDNAs showed high hybridization abilities with complementary RNA and excellent enzymatic stabilities compared with natural DNA. Moreover, the in vitro antisense potency of oligonucleotides with these EoDNAs and our recently reported methylene-EoDNAs was investigated and compared with that of LNA, which is a practical chemical modification for oligonucleotide-therapeutic agents. The results showed that EoDNAs and methylene-EoDNAs could be promising candidates for antisense technology.

摘要

我们合成了带有8'-甲基的2'-C,4'-C-亚乙基氧基桥连的2'-脱氧核糖核酸的胸苷衍生物((R)-Me-EoDNA和(S)-Me-EoDNA)以及没有任何取代基的衍生物(EoDNA)。与天然DNA相比,包含这些EoDNA的寡核苷酸与互补RNA显示出高杂交能力和出色的酶稳定性。此外,研究了带有这些EoDNA的寡核苷酸以及我们最近报道的亚甲基-EoDNA的体外反义效力,并与作为寡核苷酸治疗剂的一种实用化学修饰的锁核酸(LNA)进行了比较。结果表明,EoDNA和亚甲基-EoDNA可能是反义技术的有前景的候选物。

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