Department of Chemistry, Whitman College, WA 99362, USA.
J Enzyme Inhib Med Chem. 2013 Jun;28(3):468-78. doi: 10.3109/14756366.2011.651466. Epub 2012 Mar 1.
This research investigates the synthesis and inhibitory potency of a series of novel dipeptidyl allyl sulfones as clan CA cysteine protease inhibitors. The structure of the inhibitors consists of a R(1)-Phe-R(2)-AS-Ph scaffold (AS = allyl sulfone). R(1) was varied with benzyloxycarbonyl, morpholinocarbonyl, or N-methylpiperazinocarbonyl substituents. R(2) was varied with either Phe of Hfe residues. Synthesis involved preparation of vinyl sulfone analogues followed by isomerization to allyl sulfones using n-butyl lithium and t-butyl hydroperoxide. Sterics, temperature and base strength were all factors that affected the formation and stereochemistry of the allyl sulfone moiety. The inhibitors were assayed with three clan CA cysteine proteases (cruzain, cathepsin B and calpain I) as well as one serine protease (trypsin). The most potent inhibitor, (E)-Mu-Phe-Hfe-AS-Ph, displayed at least 10-fold selectivity for cruzain over clan CA cysteine proteases cathepsin B and calpain I with a (kobs)/[I] of 6080 ± 1390 M(-1)s(-1).
本研究探索了一系列新型二肽基烯丙基砜作为 clan CA 半胱氨酸蛋白酶抑制剂的合成和抑制效力。抑制剂的结构由 R(1)-Phe-R(2)-AS-Ph 支架(AS = 烯丙基砜)组成。R(1) 可以用苄氧羰基、吗啉羰基或 N-甲基哌嗪羰基取代。R(2) 可以用苯丙氨酸或 Hfe 残基取代。合成涉及制备乙烯砜类似物,然后使用正丁基锂和叔丁基过氧化氢异构化为烯丙基砜。立体位阻、温度和碱强度都是影响烯丙基砜部分形成和立体化学的因素。这些抑制剂用三种 clan CA 半胱氨酸蛋白酶(克氏锥虫 cruzain、组织蛋白酶 B 和钙蛋白酶 I)以及一种丝氨酸蛋白酶(胰蛋白酶)进行了检测。最有效的抑制剂 (E)-Mu-Phe-Hfe-AS-Ph 对 cruzain 的选择性至少比 clan CA 半胱氨酸蛋白酶组织蛋白酶 B 和钙蛋白酶 I 高 10 倍,其 (kobs)/[I] 值为 6080 ± 1390 M(-1)s(-1)。