Ryder N S, Dupont M C
Biochem J. 1985 Sep 15;230(3):765-70. doi: 10.1042/bj2300765.
The inhibition of squalene epoxidase by the allylamine antimycotic agents naftifine and compound SF 86-327 was investigated, with particulate enzyme preparations from the pathogenic yeasts Candida albicans and Candida parapsilosis and from rat liver. Both naftifine and compound SF 86-327 were potent inhibitors of the Candida epoxidases and showed apparently non-competitive kinetics with respect to the substrate squalene. The Ki values for naftifine and compound SF 86-327 in the C. albicans system were 1.1 microM and 0.03 microM respectively. The C. parapsilosis enzyme was slightly more sensitive to inhibition. Varying the concentrations of cofactors or the soluble cytoplasmic fraction (S200) had no effect on the inhibition. The epoxidase from rat liver was much less sensitive (Ki for compound SF 86-327 was 77 microM). The inhibition was also qualitatively different from that in Candida, being competitive with respect to squalene and also with respect to the S200 fraction. S200 fraction derived from C. albicans also antagonized the inhibition of the epoxidase from liver, but the liver S200 fraction did not affect inhibition of the Candida enzyme by compound SF 86-327. There was no evidence for an irreversible or mechanism-based inhibition of either the fungal or the mammalian epoxidase. The selective inhibition of squalene epoxidase was sufficient to account for the known antimycotic action of the compounds.
研究了烯丙胺类抗真菌药萘替芬和化合物SF 86 - 327对角鲨烯环氧酶的抑制作用,所用的微粒体制剂来自致病性酵母白色念珠菌和近平滑念珠菌以及大鼠肝脏。萘替芬和化合物SF 86 - 327都是念珠菌环氧酶的强效抑制剂,并且相对于底物角鲨烯表现出明显的非竞争性动力学。在白色念珠菌体系中,萘替芬和化合物SF 86 - 327的Ki值分别为1.1微摩尔/升和0.03微摩尔/升。近平滑念珠菌的酶对抑制作用稍敏感一些。改变辅因子或可溶性胞质部分(S200)的浓度对抑制作用没有影响。大鼠肝脏的环氧酶敏感性要低得多(化合物SF 86 - 327的Ki值为77微摩尔/升)。这种抑制作用在性质上也与念珠菌中的不同,它相对于角鲨烯以及相对于S200部分都是竞争性的。来自白色念珠菌的S200部分也拮抗肝脏环氧酶的抑制作用,但肝脏的S200部分并不影响化合物SF 86 - 327对念珠菌酶的抑制作用。没有证据表明对真菌或哺乳动物的环氧酶存在不可逆或基于机制性的抑制作用。对角鲨烯环氧酶的选择性抑制足以解释这些化合物已知的抗真菌作用。