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氢键催化剂实现的2-硝基糖的可控1,3-双官能化,具有高区域选择性和立体选择性。

Controllable 1,3-Bis-Functionalization of 2-Nitroglycals with High Regioselectivity and Stereoselectivity Enabled by a H-Bond Catalyst.

作者信息

Li Jiangtao, Fu Zhengyan, Qiao Zeen, Xie Demeng, Zhang Li, Liu Ya-Zhou, Yang Jian, Yan Jia-Xin, Ma Xiaofeng

机构信息

Natural Products Research Center, Chengdu Institute of Biology, Chinese Academy of Sciences, Chengdu 610041, People's Republic of China.

University of Chinese Academy of Sciences, Beijing 100049, People's Republic of China.

出版信息

JACS Au. 2024 Mar 11;4(3):974-984. doi: 10.1021/jacsau.3c00727. eCollection 2024 Mar 25.

DOI:10.1021/jacsau.3c00727
PMID:38559736
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10976612/
Abstract

The selective modification of carbohydrates is significant for producing their unnatural analogues for drug discovery. C1-functionalization (glycosylation) and C1,C2-difunctionalization of carbohydrates have been well developed. In contrast, C3-functionalization or C1,C3-difunctionalization of carbohydrates remains rare. Herein, we report such processes that efficiently and stereoselectively modify carbohydrates. Specifically, we found that trifluoroethanol (TFE) could promote 1,3-bis-indolylation/pyrrolylation of 2-nitroglycals generated carbohydrate derivatives in up to 93% yield at room temperature; slightly reducing the temperature could install two different indoles at the C1- and C3-positions. Switching TFE to a bifunctional amino thiourea catalyst leads to the generation of C3 monosubstituted carbohydrates, which could also be used to construct 1,3-di--functionalized carbohydrates. This approach produced a range of challenging sugar derivatives (over 80 examples) with controllable and high stereoselectivity (single isomer for over 90% of the examples). The potential applications of the reaction were demonstrated by a set of transformations including the synthesis of bridged large-ring molecules and gram scale reactions. Biological activities evaluation demonstrated that three compounds exhibit a potent inhibitory effect on human cancer cells T24, HCT116, AGS, and MKN-45 with IC ranged from 0.695 to 3.548 μM.

摘要

碳水化合物的选择性修饰对于制备用于药物发现的非天然类似物具有重要意义。碳水化合物的C1官能化(糖基化)和C1、C2双官能化已得到充分发展。相比之下,碳水化合物的C3官能化或C1、C3双官能化仍然很少见。在此,我们报道了能够有效且立体选择性地修饰碳水化合物的此类过程。具体而言,我们发现三氟乙醇(TFE)可以促进2-硝基糖烯的1,3-双吲哚化/吡咯化,在室温下以高达93%的产率生成碳水化合物衍生物;稍微降低温度可以在C1和C3位安装两种不同的吲哚。将TFE换成双官能氨基硫脲催化剂会生成C3单取代的碳水化合物,其也可用于构建1,3-双官能化的碳水化合物。该方法制备了一系列具有可控且高立体选择性的具有挑战性的糖衍生物(超过80个实例)(超过90%的实例为单一异构体)。通过包括桥连大环分子的合成和克级反应在内的一系列转化证明了该反应的潜在应用。生物活性评估表明,三种化合物对人癌细胞T24、HCT116、AGS和MKN-45表现出强效抑制作用,IC范围为0.695至3.548μM。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/71018118f180/au3c00727_0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/d4ea6d444ae2/au3c00727_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/09ce0c567754/au3c00727_0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/71018118f180/au3c00727_0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/d4ea6d444ae2/au3c00727_0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/09ce0c567754/au3c00727_0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0185/10976612/71018118f180/au3c00727_0003.jpg

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