Norman B H, Shih C, Toth J E, Ray J E, Dodge J A, Johnson D W, Rutherford P G, Schultz R M, Worzalla J F, Vlahos C J
Eli Lilly and Company, Lilly Research Laboratories, Lilly Corporate Center, Indianapolis, Indiana 46285, USA.
J Med Chem. 1996 Mar 1;39(5):1106-11. doi: 10.1021/jm950619p.
Wortmannin, a fungal metabolite, was identified as a potent inhibitor (IC50 = 4.2 nM) of phosphatidylinositol 3-kinase (PI 3-kinase). Due to the importance of PI 3-kinase in several intracellular signaling pathways, structure-activities studies on wortmannin analogs were performed in an effort to understand the structural requirements necessary for PI 3-kinase inhibition. Since wortmannin is an irreversible inhibitor of PI 3-kinase, it was postulated that covalent attachment at the electrophilic C-21 site was a possible mode of action for PI 3-kinase inhibition. We have prepared various wortmannin analogs which address the possibility of this mechanism. Of particular interest are compounds which affect the C-21 position of wortaminnin either sterically or electronically. Our results support the conclusion that nucleophilic addition by the kinase onto the C-21 position of wortmannin is required for inhibition of PI 3-kinase by wortmannin analogs. Additionally, we have prepared several D-ring analogs of wortmannin, and their activities are reported herein. We conclude that the wortmannin D ring is an important recognition site since modifications have such a dramatic effect on inhibitor potency. Finally, the identification of 17beta-hydroxywortmannin represents the first reported subnanomolar inhibitor of PI 3-kinase. These studies, along with in vivo antitumor experiments, suggest that the mechanism of PI 3-kinase inhibition correlates to the associated toxicity observed with wortmannin-based inhibitors of PI 3-kinase.
渥曼青霉素是一种真菌代谢产物,被鉴定为磷脂酰肌醇3激酶(PI 3激酶)的强效抑制剂(IC50 = 4.2 nM)。由于PI 3激酶在多个细胞内信号通路中具有重要作用,因此对渥曼青霉素类似物进行了构效关系研究,以了解抑制PI 3激酶所需的结构要求。由于渥曼青霉素是PI 3激酶的不可逆抑制剂,因此推测在亲电的C-21位点的共价连接是抑制PI 3激酶的一种可能作用方式。我们制备了各种渥曼青霉素类似物,以探讨这种机制的可能性。特别令人感兴趣的是那些在空间或电子方面影响渥曼青霉素C-21位的化合物。我们的结果支持这样的结论,即渥曼青霉素类似物抑制PI 3激酶需要激酶对渥曼青霉素的C-21位进行亲核加成。此外,我们制备了几种渥曼青霉素的D环类似物,并在此报告了它们的活性。我们得出结论,渥曼青霉素的D环是一个重要的识别位点,因为修饰对抑制剂效力有如此显著的影响。最后,17β-羟基渥曼青霉素的鉴定代表了首个报道的亚纳摩尔级PI 3激酶抑制剂。这些研究以及体内抗肿瘤实验表明,PI 3激酶抑制机制与基于渥曼青霉素的PI 3激酶抑制剂所观察到的相关毒性相关。