Tang Ying, Xue Yongbo, Du Guang, Wang Jianping, Liu Junjun, Sun Bin, Li Xiao-Nian, Yao Guangmin, Luo Zengwei, Zhang Yonghui
Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Hubei Key Laboratory of Natural Medicinal Chemistry and Resource Evaluation, School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430030, China.
Angew Chem Int Ed Engl. 2016 Mar 14;55(12):4069-73. doi: 10.1002/anie.201600313. Epub 2016 Feb 24.
The reisolation and structural revision of brassicicene D is described, and inspired us to reassign the core skeletons of brassicicenes C-H, J and K, ranging from dicyclopenta[a,d]cyclooctane to tricyclo[9.2.1.0(3,7)]tetradecane using quantum-chemical predictions and experimental validation strategies. Three novel, highly modified fusicoccanes, brassicicenes L-N, were also isolated from the fungus Alternaria brassicicola, and their structures were unequivocally established by spectroscopic data, ECD calculations, and crystallography. The reassigned structures represent the first class of bridgehead double-bond-containing natural products with a bicyclo[6.2.1]undecane carbon skeleton. Furthermore, their stabilities were first predicted with olefin strain energy calculations. Collectively, these findings extend our view of the application of computational predictions and biosynthetic logic-based structure elucidation to address problems related to the structure and stability of natural products.
本文描述了油菜素D的重新分离及结构修正,并启发我们利用量子化学预测和实验验证策略,重新确定油菜素C-H、J和K的核心骨架,其范围从二环戊[a,d]环辛烷到三环[9.2.1.0(3,7)]十四烷。还从真菌链格孢中分离出三种新型的、高度修饰的梭链孢烷类化合物——油菜素L-N,并通过光谱数据、ECD计算和晶体学明确确定了它们的结构。重新确定的结构代表了第一类具有双环[6.2.1]十一烷碳骨架的桥头含双键天然产物。此外,首次通过烯烃应变能计算预测了它们的稳定性。总的来说,这些发现扩展了我们对计算预测和基于生物合成逻辑的结构解析在解决天然产物结构和稳定性相关问题方面应用的认识。