Favre B, Ryder N S
Department of General Dermatology NOVARTIS Research Institute, Vienna, Austria.
Arch Biochem Biophys. 1997 Apr 15;340(2):265-9. doi: 10.1006/abbi.1997.9908.
The allylamine class of antifungal compounds are specific inhibitors of squalene epoxidase (SE). However, depending on their chemical structure, allylamine derivatives can be highly selective for either fungal or mammalian SEs. All allylamines tested previously, irrespective of their selectivity, inhibit fungal SEs in a noncompetitive manner and mammalian SEs in a competitive manner. Here we have analyzed the inhibitory properties of the benzylamine SDZ SBA 586 toward fungal and mammalian SEs in comparison to the systemic antimycotic terbinafine, SDZ SBA 586 was, like terbinafine a selective inhibitor of fungal SE. Microsomal SE from the pathogenic yeast candida albicans was sixfold more sensitive to SDZ SBA 586 than to terbinafine, C50: 8 nM versus 44 nM, while the enzyme from the dermatophyte fungus Trichophyton rubrum was slightly less sensitive to SDZ SBA 586 than to terbinafine, IC50: 39 and 18 nM, respectively. Similarly to terbinafine, SDZ SBA 586 inhibited the yeast enzyme in non competitive manner, SDZ SBA 586 also inhibited mammalian microsomal SEs, but only at micromolar concentrations. It was more active than terbinafine toward both guinea pig SE, IC50: 2 microM versus 4 microM, and rat SE, IC50: 11 microM versus 87 microM. However, in contrast to terbinafine as well as allylamines selective for mammalian SE, SDZ SBA 586 was a noncompetitive inhibitor of rat microsomal SE. Interestingly, depending on the source of microsomal SE, binding of terbinafine and SDZ SBA 586 exhibited a positive, indifferent, or negative cooperativity, suggesting that SE is an oligomeric enzyme.
烯丙胺类抗真菌化合物是角鲨烯环氧酶(SE)的特异性抑制剂。然而,根据其化学结构,烯丙胺衍生物对真菌或哺乳动物的SEs可能具有高度选择性。以前测试的所有烯丙胺,无论其选择性如何,均以非竞争性方式抑制真菌SEs,以竞争性方式抑制哺乳动物SEs。在这里,我们分析了苄胺SDZ SBA 586与全身性抗真菌药特比萘芬相比对真菌和哺乳动物SEs的抑制特性。SDZ SBA 586与特比萘芬一样,是真菌SE的选择性抑制剂。致病性酵母白色念珠菌的微粒体SE对SDZ SBA 586的敏感性比对特比萘芬高6倍,C50分别为8 nM和44 nM;而皮肤癣菌红色毛癣菌的酶对SDZ SBA 586的敏感性比对特比萘芬略低,IC50分别为39 nM和18 nM。与特比萘芬类似,SDZ SBA 586以非竞争性方式抑制酵母酶。SDZ SBA 586也抑制哺乳动物微粒体SEs,但仅在微摩尔浓度下。它对豚鼠SE(IC50:2 μM对4 μM)和大鼠SE(IC50:11 μM对87 μM)的活性均高于特比萘芬。然而,与特比萘芬以及对哺乳动物SE具有选择性的烯丙胺不同,SDZ SBA 586是大鼠微粒体SE的非竞争性抑制剂。有趣的是,根据微粒体SE的来源,特比萘芬和SDZ SBA 586的结合表现出正协同、无协同或负协同作用,这表明SE是一种寡聚酶。