Lamb D C, Baldwin B C, Kwon-Chung K J, Kelly S L
Department of Molecular Biology and Biotechnology, Krebs Institute for Biomolecular Research, Sheffield University, United Kingdom.
Antimicrob Agents Chemother. 1997 Jul;41(7):1465-7. doi: 10.1128/AAC.41.7.1465.
We investigated the stereoselective inhibition of growth and ergosterol biosynthesis by SCH39304 in the pathogenic fungus Cryptococcus neoformans obtained from four AIDS patients who failed fluconazole therapy and compared the results to those obtained with a wild-type strain. For all strains, the MICs of the RR isomer were approximately half those of the racemate, with the SS enantiomer showing no inhibitory activity. The 50% inhibitory concentrations for in vitro ergosterol biosynthesis correlated with the MIC data, indicating stereoselective inhibition of their target P-450 enzyme, sterol 14alpha-demethylase, as the cause of this difference. The RR enantiomer produced classical type II spectra on addition to microsomal extracts of the strains, whereas the SS enantiomer showed an absence of binding. Stereo- and regio-specific localization of N-1 substituent groups of SCH39304 within the active site of the enzyme determined the unique discrimination between its two enantiomers, and the inability to bind to sterol 14alpha-demethylase is also true of other P-450 enzymes contained in the microsomal fraction. As previously observed for other antifungal azoles, isolates obtained following failure of fluconazole therapy showed resistance to SCH39304 and its RR enantiomer. This resistance could be associated with an alteration in the sensitivity of ergosterol biosynthesis in vitro. These alterations did not cause any changes allowing the SS enantiomer to bind to the P-450 mediating sterol 14alpha-demethylation.
我们研究了SCH39304对从4例氟康唑治疗失败的艾滋病患者体内分离出的新型隐球菌的生长及麦角甾醇生物合成的立体选择性抑制作用,并将结果与野生型菌株的结果进行比较。对于所有菌株,RR异构体的最低抑菌浓度(MIC)约为消旋体的一半,而SS对映体无抑制活性。体外麦角甾醇生物合成的50%抑制浓度与MIC数据相关,表明对其靶标P-450酶(甾醇14α-去甲基酶)的立体选择性抑制是造成这种差异的原因。RR对映体加入菌株的微粒体提取物后产生典型的II型光谱,而SS对映体则无结合现象。SCH39304的N-1取代基在酶活性位点内的立体和区域特异性定位决定了其两种对映体之间的独特区分,且微粒体组分中含有的其他P-450酶也无法与甾醇14α-去甲基酶结合。如先前对其他抗真菌唑类所观察到的,氟康唑治疗失败后分离出的菌株对SCH39304及其RR对映体具有抗性。这种抗性可能与体外麦角甾醇生物合成敏感性的改变有关。这些改变并未导致任何变化使SS对映体能够与介导甾醇14α-去甲基化的P-450结合。