化学
部分
立体化学
糖基化
立体选择性
氧化膦
另一个
核苷酸还原酶
组合化学
磷化氢
生物化学
催化作用
蛋白质亚单位
基因
作者
Xintong Tang,Yueer Zhou,Yingjie Wang,Yetong Lin,S. Pan,Qianwei Che,Jinpeng Sang,Ziming Gao,Weiting Zhang,Yuanyuan Wang,Guolong Li,Longwei Gao,Zhimei Wang,X H Yang,Ao Liu,Suyu Wang,Biao Yu,Peng Xu,Zhe Wang,Zhaolun Zhang
摘要
2'-Deoxynucleosides and analogues play a vital role in drug development, but their preparation remains a significant challenge. Previous studies have focused on β-2'-deoxynucleosides with the natural β-configuration. In fact, their isomeric α-2'-deoxynucleosides also exhibit diverse bioactivities and even better metabolic stability. Herein, we report that both α- and β-2'-deoxynucleosides can be prepared with high yields and stereoselectivity using a remote directing diphenylphosphinoyl (DPP) group. It is particularly efficient to prepare α-2'-deoxynucleosides with an easily accessible 3,5-di-ODPP donor. Instead of acting as a H-bond acceptor on a 2-(diphenylphosphinoyl)acetyl (DPPA) group in our previous studies for syn-facial O-glycosylation, the phosphine oxide moiety here acts as a remote participating group to enable highly antifacial N-glycosylation. This proposed remote participation mechanism is supported by our first characterization of an important 1,5-briged P-heterobicyclic intermediate via variable-temperature NMR spectroscopy. Interestingly, antiproliferative assays led to a α-2'-deoxynucleoside with IC50 values in the low micromole range against central nervous system tumor cell lines SH-SY5Y and LN229, whereas its β-anomer exhibited no inhibition at 100 μM. Furthermore, the DPP group significantly enhanced the antitumor activities by 10 times.
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