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致病真菌新型隐球菌中二氧化碳感应碳酸酐酶Can2的结构与抑制作用

Structure and inhibition of the CO2-sensing carbonic anhydrase Can2 from the pathogenic fungus Cryptococcus neoformans.

作者信息

Schlicker Christine, Hall Rebecca A, Vullo Daniela, Middelhaufe Sabine, Gertz Melanie, Supuran Claudiu T, Mühlschlegel Fritz A, Steegborn Clemens

机构信息

Department of Physiological Chemistry, Ruhr-University Bochum, Universitätsstrasse 150, 44801 Bochum, Germany.

出版信息

J Mol Biol. 2009 Jan 30;385(4):1207-20. doi: 10.1016/j.jmb.2008.11.037. Epub 2008 Nov 27.

Abstract

In the pathogenic fungus Cryptococcus neoformans, a CO(2)-sensing system is essential for survival in the natural environment (approximately 0.03% CO(2)) and mediates the switch to virulent growth in the human host (approximately 5% CO(2)). This system is composed of the carbonic anhydrase (CA) Can2, which catalyzes formation of bicarbonate, and the fungal, bicarbonate-stimulated adenylyl cyclase Cac1. The critical role of these enzymes for fungal metabolism and pathogenesis identifies them as targets for antifungal drugs. Here, we prove functional similarity of Can2 to the CA Nce103 from Candida albicans and describe its biochemical and structural characterization. The crystal structure of Can2 reveals that the enzyme belongs to the "plant-type" beta-CAs but carries a unique N-terminal extension that can interact with the active-site entrance of the dimer. We further tested a panel of compounds, identifying nanomolar Can2 inhibitors, and present the structure of a Can2 complex with the inhibitor and product analog acetate, revealing insights into interactions with physiological ligands and inhibitors.

摘要

在致病真菌新型隐球菌中,二氧化碳感应系统对于其在自然环境(约0.03%二氧化碳)中的生存至关重要,并介导其在人类宿主(约5%二氧化碳)中转变为毒性生长。该系统由催化碳酸氢盐形成的碳酸酐酶(CA)Can2和真菌的、碳酸氢盐刺激的腺苷酸环化酶Cac1组成。这些酶在真菌代谢和致病过程中的关键作用使其成为抗真菌药物的靶点。在此,我们证明了Can2与白色念珠菌的CA Nce103功能相似,并描述了其生化和结构特征。Can2的晶体结构表明,该酶属于“植物型”β-碳酸酐酶,但具有独特的N端延伸,可与二聚体的活性位点入口相互作用。我们进一步测试了一组化合物,鉴定出了纳摩尔级的Can2抑制剂,并展示了Can2与抑制剂和产物类似物乙酸盐的复合物结构,揭示了其与生理配体和抑制剂相互作用的见解。

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