Practical, catalytic, asymmetric synthesis of β-lactones via a sequential ketene dimerization/hydrogenation process:: Inhibitors of the thioesterase domain of fatty acid synthase

被引:69
作者
Purohit, Vikram C.
Richardson, Robyn D.
Smith, Jeffrey W. [1 ]
Romo, Daniel
机构
[1] Burnham Inst Med Res, Cell Adhes & Extra Cellular Matrix Biol, Infect & Inflammatory Dis Ctr, La Jolla, CA 92037 USA
[2] Texas A&M Univ, Dept Chem, College Stn, TX 77842 USA
关键词
D O I
10.1021/jo060392d
中图分类号
O62 [有机化学];
学科分类号
070303 ; 081704 ;
摘要
The recent finding that the FDA-approved antiobesity agent orlistat ( tetrahydrolipstatin, Xenical) is a potent inhibitor of the thioesterase domain of fatty acid synthase (FAS) led us to develop a concise and practical asymmetric route to pseudosymmetric 3,4-dialkyl-cis-beta-lactones. The well-documented upregulation of FAS in cancer cells makes this enzyme complex an interesting therapeutic target for cancer. The described route to 3,4-dialkyl-beta-lactones is based on a two-step process involving Calter's catalytic, asymmetric ketene dimerization of acid chlorides followed by a facial-selective hydrogenation leading to cis-substituted-beta-lactones. Importantly, the ketene dimer intermediates were found to be stable to flash chromatography, enabling opportunities for subsequent transformations of these optically active, reactive intermediates. Subsequent alpha-epimerization and alpha-alkylation or acylation led to trans-beta-lactones and beta-lactones bearing alpha-quaternary carbons, respectively. Several of the ketene dimers and beta-lactones displayed antagonistic activity (apparent K-i in the low micromolar range) in competition with a fluorogenic substrate toward a recombinant form of the thioesterase domain of fatty acid synthase. The best antagonist, a simple phenyl-substituted cis-beta-lactone 3d, displayed an apparent K-i (2.5 +/- 0.5 mu M) of only similar to 10-fold lower than that of orlistat (0.28 +/- 0.06 mu M). In addition, mechanistic studies of the ketene dimerization process by ReactionView infrared spectroscopy support previous findings that ketene formation is rate determining.
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页码:4549 / 4558
页数:10
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