Hanessian Stephen, Del Valle Juan R, Xue Yafeng, Blomberg Niklas
Department of Chemistry, Université de Montréal, C.P. 6128, Station Centre-ville, Montréal, P.Q., H3C 3J7 Canada.
J Am Chem Soc. 2006 Aug 16;128(32):10491-5. doi: 10.1021/ja0625834.
The first enantiocontrolled total synthesis of the marine sponge metabolite chlorodysinosin A is described. The structure and absolute configuration are identical to those of dysinosin A except for the presence of a novel 2S,3R-3-chloroleucine residue in the former. A concise stereocontrolled synthesis of the new chlorine-containing amino acid fragment was developed. An X-ray cocrystal structure of synthetic chlorodysinosin A with the enzyme thrombin confirms the structure and configuration assignment achieved through total synthesis. Within the aeruginosin family of natural products, chlorodysinosin A is the most potent inhibitor of the serine proteases thrombin, factor VIIa, and factor Xa, which are critical enzymes in the process leading to platelet aggregation and fibrin mesh formation in humans.
本文描述了海洋海绵代谢产物氯代迪西诺辛A的首次对映体控制的全合成。除了前者存在一个新的2S,3R - 3 - 氯亮氨酸残基外,其结构和绝对构型与迪西诺辛A相同。开发了一种简洁的立体控制合成新的含氯氨基酸片段的方法。合成的氯代迪西诺辛A与凝血酶的X射线共晶体结构证实了通过全合成获得的结构和构型归属。在天然产物铜绿假单胞菌素家族中,氯代迪西诺辛A是丝氨酸蛋白酶凝血酶、因子VIIa和因子Xa的最有效抑制剂,这些酶是导致人类血小板聚集和纤维蛋白网形成过程中的关键酶。