Chiu F C, Watson T R
J Med Chem. 1985 Apr;28(4):509-15. doi: 10.1021/jm00382a023.
Gomphoside, a 5 alpha-H cardiac glycoside isolated from Asclepias fructicosa, has an unique double glycosidic linkage to the aglycon through oxygen atoms at 2 alpha and 3 beta of the steroid. The 3'-axial hydroxyl of its conformationally rigid sugar residue appears to be the functional group responsible for its potent inotropic activity. With use of gomphoside as the model compound, the conformation of the flexible glycosidic linkage of the 5 beta-H cardenolides, digitoxigenin alpha-L-rhamnoside and digitoxigenin beta-D-digitoxoside, and the 5 alpha-H cardenolides, uzarigenin alpha-L-rhamnoside and uzarigenin beta-D-6-deoxyalloside, were investigated with the aid of computer graphics and conformational potential energy calculations. The relative inotropic potencies of these cardenolides can be accounted for by considering their active binding conformations with their potential energy distributions. The conformational distribution of the glycosidic moiety was postulated to be the major determinant of the biological activity of these cardenolides.
戈姆福苷是从萝摩科植物牛角瓜中分离得到的一种5α-H强心苷,它通过甾体2α和3β位的氧原子与苷元形成独特的双糖苷键。其构象刚性糖残基的3'-轴向羟基似乎是其强心肌收缩活性的官能团。以戈姆福苷为模型化合物,借助计算机图形学和构象势能计算,研究了5β-H强心苷洋地黄毒苷元α-L-鼠李糖苷和洋地黄毒苷元β-D-洋地黄毒糖苷,以及5α-H强心苷乌沙苷元α-L-鼠李糖苷和乌沙苷元β-D-6-脱氧阿洛糖苷的柔性糖苷键的构象。这些强心苷的相对心肌收缩活性可以通过考虑它们的活性结合构象及其势能分布来解释。糖苷部分的构象分布被认为是这些强心苷生物活性的主要决定因素。