寡核苷酸
化学
立体化学
核糖核酸酶P
核糖核酸酶H
组合化学
小分子
核糖核酸
手性(物理)
劈理(地质)
体外
分子
生物化学
生物
DNA
基因
有机化学
物理
夸克
古生物学
量子力学
手征对称破缺
断裂(地质)
Nambu–Jona Lasinio模型
作者
Naoki Iwamoto,David C. Butler,Nenad Svrzikapa,Susovan Mohapatra,Ivan Zlatev,Dinah W.Y. Sah,Meena Meena,Stephany M. Standley,Genliang Lu,Luciano H. Apponi,Maria Frank-Kamenetsky,Jason Jingxin Zhang,Chandra Vargeese,Gregory L. Verdine
摘要
Whereas stereochemical purity in drugs has become the standard for small molecules, stereoisomeric mixtures containing as many as a half million components persist in antisense oligonucleotide (ASO) therapeutics because it has been feasible neither to separate the individual stereoisomers, nor to synthesize stereochemically pure ASOs. Here we report the development of a scalable synthetic process that yields therapeutic ASOs having high stereochemical and chemical purity. Using this method, we synthesized rationally designed stereopure components of mipomersen, a drug comprising 524,288 stereoisomers. We demonstrate that phosphorothioate (PS) stereochemistry substantially affects the pharmacologic properties of ASOs. We report that Sp-configured PS linkages are stabilized relative to Rp, providing stereochemical protection from pharmacologic inactivation of the drug. Further, we elucidated a triplet stereochemical code in the stereopure ASOs, 3'-SpSpRp, that promotes target RNA cleavage by RNase H1 in vitro and provides a more durable response in mice than stereorandom ASOs.
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