Buynak J D, Rao A S, Ford G P, Carver C, Adam G, Geng B, Bachmann B, Shobassy S, Lackey S
Department of Chemistry, Southern Methodist University, Dallas, Texas 75275, USA.
J Med Chem. 1997 Oct 10;40(21):3423-33. doi: 10.1021/jm970351x.
A series of 7-alkylidenecephalosporins and 7-vinylidenecephalosporins, as their benzhydryl esters, have been tested as inhibitors of both porcine pancreatic elastase and human leukocyte elastase. Selected 7-alkylidenecephalosporin esters are found to be potent inhibitors of HLE. One category of new inhibitors is the 7-(haloalkylidene)cephalosporins. In contrast to previously reported cephalosporin-based elastase inhibitors, these haloalkylidene cephems show optimum inhibitory activity as sulfides, rather than as sulfones. They are efficient and irreversible inhibitors. A second class of active compounds is represented by the benzhydryl ester 7-(cyanomethylidene)cephalosporin sulfone. In contrast to the activity of these new inhibitors, the benzhydryl ester of the mechanism-based beta-lactamase inhibitor, 7-[(2'-pyridyl)methylidene]-cephalosporin sulfone showed little inhibitory activity as an elastase inhibitor. 7-Vinylidenecephalosporins were also relatively poor inhibitors, although the terminally unsubstituted allene sulfide showed activity as an inhibitor of PPE. A modeling analysis suggests the 7-alkylidene substituents can be readily accommodated in the S1 pocket. A potential mechanism of inhibition is proposed.
一系列7-亚烷基头孢菌素和7-亚乙烯基头孢菌素,以其二苯甲基酯形式,已作为猪胰弹性蛋白酶和人白细胞弹性蛋白酶的抑制剂进行了测试。选定的7-亚烷基头孢菌素酯被发现是HLE的有效抑制剂。一类新的抑制剂是7-(卤代亚烷基)头孢菌素。与先前报道的基于头孢菌素的弹性蛋白酶抑制剂不同,这些卤代亚烷基头孢烯作为硫化物而非砜表现出最佳抑制活性。它们是高效且不可逆的抑制剂。第二类活性化合物由二苯甲基酯7-(氰基亚甲基)头孢菌素砜代表。与这些新抑制剂的活性相反,基于机制的β-内酰胺酶抑制剂7-[(2'-吡啶基)亚甲基]-头孢菌素砜的二苯甲基酯作为弹性蛋白酶抑制剂几乎没有抑制活性。7-亚乙烯基头孢菌素也是相对较差的抑制剂,尽管末端未取代的丙二烯硫化物表现出作为PPE抑制剂的活性。一项建模分析表明,7-亚烷基取代基可以很容易地容纳在S1口袋中。提出了一种潜在的抑制机制。