Heynekamp Justin J, Hunsaker Lucy A, Vander Jagt Thomas A, Royer Robert E, Deck Lorraine M, Vander Jagt David L
Department of Chemistry, University of New Mexico, Albuquerque, NM 87131, USA.
Bioorg Med Chem. 2008 May 1;16(9):5285-94. doi: 10.1016/j.bmc.2008.03.016. Epub 2008 Mar 6.
Pancreatic cholesterol esterase (CEase), which is secreted from the exocrine pancreas, is a serine hydrolase that aids in the bile salt-dependent hydrolysis of dietary cholesteryl esters and contributes to the hydrolysis of triglycerides and phospholipids. Additional roles for CEase in intestinal micelle formation and in transport of free cholesterol to the enterocyte have been suggested. There also are studies that point to a pathological role(s) for CEase in the circulation where CEase accumulates in atherosclerotic lesions and triggers proliferation of smooth muscle cells. Thus, there is interest in CEase as a potential drug target. 4-Chloro-3-alkoxyisocoumarins are a class of haloenol lactones that inhibit serine hydrolases and serine proteases and have the potential to be suicide inhibitors. In the present study, we have developed 3-alkoxychloroisocoumarins that are potent inhibitors of CEase. These inhibitors were designed to have a saturated cycloalkane ring incorporated into a 3-alkoxy substituent. The size of the ring as well as the length of the tether holding the ring was found to be important contributors to binding to CEase. 4-Chloro-3-(4-cyclohexylbutoxy)isocoumarin and 4-chloro-3-(3-cyclopentylpropoxy)isocoumarin were demonstrated to be potent reversible inhibitors of CEase, with dissociation constants of 11nM and 19nM, respectively. The kinetic results are consistent with predictions from molecular modeling.
胰腺胆固醇酯酶(CEase)由胰腺外分泌腺分泌,是一种丝氨酸水解酶,有助于胆汁盐依赖性水解膳食胆固醇酯,并参与甘油三酯和磷脂的水解。有人提出CEase在肠道微胶粒形成以及游离胆固醇向肠细胞转运过程中具有其他作用。也有研究指出CEase在循环系统中具有病理作用,CEase在动脉粥样硬化病变中积聚并触发平滑肌细胞增殖。因此,人们对将CEase作为潜在药物靶点很感兴趣。4-氯-3-烷氧基异香豆素是一类卤代烯醇内酯,可抑制丝氨酸水解酶和丝氨酸蛋白酶,有可能成为自杀性抑制剂。在本研究中,我们开发了3-烷氧基氯异香豆素,它们是CEase的强效抑制剂。这些抑制剂被设计成在3-烷氧基取代基中引入一个饱和环烷烃环。发现环的大小以及连接环的链的长度是与CEase结合的重要因素。4-氯-3-(4-环己基丁氧基)异香豆素和4-氯-3-(3-环戊基丙氧基)异香豆素被证明是CEase的强效可逆抑制剂,解离常数分别为11nM和19nM。动力学结果与分子模拟预测一致。