Jung Won Hee, Sham Anita, Lian Tianshun, Singh Arvinder, Kosman Daniel J, Kronstad James W
The Michael Smith Laboratories, Department of Microbiology and Immunology, and Faculty of Land and Food Systems, University of British Columbia, Vancouver, British Columbia, Canada.
PLoS Pathog. 2008 Feb 8;4(2):e45. doi: 10.1371/journal.ppat.0040045.
The level of available iron in the mammalian host is extremely low, and pathogenic microbes must compete with host proteins such as transferrin for iron. Iron regulation of gene expression, including genes encoding iron uptake functions and virulence factors, is critical for the pathogenesis of the fungus Cryptococcus neoformans. In this study, we characterized the roles of the CFT1 and CFT2 genes that encode C. neoformans orthologs of the Saccharomyces cerevisiae high-affinity iron permease FTR1. Deletion of CFT1 reduced growth and iron uptake with ferric chloride and holo-transferrin as the in vitro iron sources, and the cft1 mutant was attenuated for virulence in a mouse model of infection. A reduction in the fungal burden in the brains of mice infected with the cft1 mutant was observed, thus suggesting a requirement for reductive iron acquisition during cryptococcal meningitis. CFT2 played no apparent role in iron acquisition but did influence virulence. The expression of both CFT1 and CFT2 was influenced by cAMP-dependent protein kinase, and the iron-regulatory transcription factor Cir1 positively regulated CFT1 and negatively regulated CFT2. Overall, these results indicate that C. neoformans utilizes iron sources within the host (e.g., holo-transferrin) that require Cft1 and a reductive iron uptake system.
哺乳动物宿主体内可利用铁的水平极低,致病微生物必须与转铁蛋白等宿主蛋白竞争铁。基因表达的铁调节,包括编码铁摄取功能和毒力因子的基因,对新型隐球菌的发病机制至关重要。在本研究中,我们对编码酿酒酵母高亲和力铁通透酶FTR1的新型隐球菌直系同源物的CFT1和CFT2基因的作用进行了表征。缺失CFT1会降低以氯化铁和全转铁蛋白作为体外铁源时的生长和铁摄取,并且cft1突变体在感染小鼠模型中的毒力减弱。观察到感染cft1突变体的小鼠大脑中的真菌负荷降低,这表明在隐球菌性脑膜炎期间需要通过还原作用获取铁。CFT2在铁摄取中没有明显作用,但确实影响毒力。CFT1和CFT2的表达均受cAMP依赖性蛋白激酶影响,并且铁调节转录因子Cir1正向调节CFT1,负向调节CFT2。总体而言,这些结果表明新型隐球菌利用宿主体内的铁源(例如全转铁蛋白),这需要Cft1和还原铁摄取系统。