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从 lentulus 和 fumigatus 曲霉中 14α-甾醇脱甲基酶(Cyp51A)的三维模型:深入了解伏立康唑相互作用的差异。

Three-dimensional models of 14α-sterol demethylase (Cyp51A) from Aspergillus lentulus and Aspergillus fumigatus: an insight into differences in voriconazole interaction.

机构信息

Mycology Reference Laboratory, Centro Nacional de Microbiologia, Instituto de Salud Carlos III, Carretera Majadahonda-Pozuelo Km 2, 28220 Madrid, Spain.

出版信息

Int J Antimicrob Agents. 2011 Nov;38(5):426-34. doi: 10.1016/j.ijantimicag.2011.06.005. Epub 2011 Aug 25.

Abstract

Aspergillus lentulus, an Aspergillus fumigatus sibling species, is increasingly reported in corticosteroid-treated patients. Its clinical significance is unknown, but the fact that A. lentulus shows reduced antifungal susceptibility, mainly to voriconazole, is of serious concern. Heterologous expression of cyp51A from A. fumigatus and A. lentulus was performed in Saccharomyces cerevisiae to assess differences in the interaction of Cyp51A with the azole drugs. The absence of endogenous ERG11 was efficiently complemented in S. cerevisiae by the expression of either Aspergillus cyp51A allele. There was a marked difference between azole minimum inhibitory concentration (MIC) values of the clones expressing each Aspergillus spp. cyp51A. Saccharomyces cerevisiae clones expressing A. lentulus alleles showed higher MICs to all of the azoles tested, supporting the hypothesis that the intrinsic azole resistance of A. lentulus could be associated with Cyp51A. Homology models of A. fumigatus and A. lentulus Cyp51A protein based on the crystal structure of Cyp51p from Mycobacterium tuberculosis in complex with fluconazole were almost identical owing to their mutual high sequence identity. Molecular dynamics (MD) was applied to both three-dimensional protein models to refine the homology modelling and to explore possible differences in the Cyp51A-voriconazole interaction. After 20ns of MD modelling, some critical differences were observed in the putative closed form adopted by the protein upon voriconazole binding. A closer study of the A. fumigatus and A. lentulus voriconazole putative binding site in Cyp51A suggested that some major differences in the protein's BC loop could differentially affect the lock-up of voriconazole, which in turn could correlate with their different azole susceptibility profiles.

摘要

赖特青霉,烟曲霉的一个亲缘种,在接受皮质类固醇治疗的患者中越来越多地被报道。其临床意义尚不清楚,但赖特青霉对唑类药物(主要是伏立康唑)的抗药性降低是一个严重的问题。在酿酒酵母中异源表达烟曲霉和赖特青霉的 Cyp51A,以评估 Cyp51A 与唑类药物相互作用的差异。通过表达 Aspergillus cyp51A 等位基因,有效地在酿酒酵母中弥补了内源 ERG11 的缺失。表达每个 Aspergillus spp. cyp51A 的克隆的唑类药物最低抑菌浓度(MIC)值有明显差异。表达赖特青霉等位基因的酿酒酵母克隆对所有测试的唑类药物的 MIC 更高,这支持了赖特青霉内在唑类耐药性可能与 Cyp51A 相关的假设。基于结核分枝杆菌 Cyp51p 与氟康唑复合物的晶体结构,基于 Mycobacterium tuberculosis 的同源性模型,烟曲霉和赖特青霉 Cyp51A 蛋白的同源模型几乎相同,因为它们具有高度的序列同一性。应用分子动力学(MD)对三维蛋白质模型进行细化同源建模,并探索 Cyp51A-伏立康唑相互作用中的可能差异。经过 20ns 的 MD 建模,在伏立康唑结合时,蛋白质采用的假定闭合形式观察到一些关键差异。对 Cyp51A 中烟曲霉和赖特青霉伏立康唑假定结合位点的进一步研究表明,BC 环中的一些主要差异可能会对伏立康唑的锁定产生不同的影响,这反过来又可能与它们不同的唑类敏感性谱相关。

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