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新型隐球菌需要 ESCRT 蛋白 Vps23 从血红素中获取铁、形成荚膜以及毒力。

Cryptococcus neoformans requires the ESCRT protein Vps23 for iron acquisition from heme, for capsule formation, and for virulence.

机构信息

Michael Smith Laboratories, Department of Microbiology and Immunology, The University of British Columbia, Vancouver, BC, Canada.

出版信息

Infect Immun. 2013 Jan;81(1):292-302. doi: 10.1128/IAI.01037-12. Epub 2012 Nov 6.

Abstract

Iron availability is a key regulator of virulence factor elaboration in Cryptococcus neoformans, the causative agent of fungal meningoencephalitis in HIV/AIDS patients. In addition, iron is an essential nutrient for pathogen proliferation in mammalian hosts but little is known about the mechanisms of iron sensing and uptake in fungal pathogens that attack humans. In this study, we mutagenized C. neoformans by Agrobacterium-mediated T-DNA insertion and screened for mutants with reduced growth on heme as the sole iron source. Among 34 mutants, we identified a subset with insertions in the gene for the ESCRT-I (endosomal sorting complex required for transport) protein Vps23 that resulted in a growth defect on heme, presumably due to a defect in uptake via endocytosis or misregulation of iron acquisition from heme. Remarkably, vps23 mutants were also defective in the elaboration of the cell-associated capsular polysaccharide that is a major virulence factor, while overexpression of Vps23 resulted in cells with a slightly enlarged capsule. These phenotypes were mirrored by a virulence defect in the vps23 mutant in a mouse model of cryptococcosis and by hypervirulence of the overexpression strain. Overall, these results reveal an important role for trafficking via ESCRT functions in both heme uptake and capsule formation, and they further reinforce the connection between iron and virulence factor deployment in C. neoformans.

摘要

铁元素的可利用性是新型隐球菌(HIV/AIDS 患者真菌性脑膜脑炎的病原体)毒力因子表达的关键调节因素。此外,铁元素是宿主中病原体增殖所必需的营养物质,但对于攻击人类的真菌病原体中铁元素感应和摄取的机制知之甚少。在这项研究中,我们通过农杆菌介导的 T-DNA 插入使新型隐球菌发生突变,并筛选出在血红素(唯一铁源)上生长受抑制的突变体。在 34 个突变体中,我们鉴定出一组插入了内体分选复合物必需运输(endosomal sorting complex required for transport,ESCRT-I)蛋白 Vps23 基因的突变体,这些突变体在血红素上的生长受到抑制,可能是由于通过胞吞作用摄取或从血红素中摄取铁的调节失常所致。值得注意的是,vps23 突变体在细胞相关荚膜多糖的表达上也存在缺陷,荚膜多糖是一种主要的毒力因子,而 Vps23 的过表达导致细胞荚膜略微增大。这些表型在隐球菌病小鼠模型中 vps23 突变体的毒力缺陷以及过表达菌株的高毒力中得到了反映。总的来说,这些结果揭示了 ESCRT 功能在血红素摄取和荚膜形成中的重要作用,并进一步加强了新型隐球菌中铁元素与毒力因子部署之间的联系。

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