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Ferric reductase genes involved in high-affinity iron uptake are differentially regulated in yeast and hyphae of Candida albicans

机译:高亲和力铁摄入中涉及的铁还原酶基因在白色念珠菌的酵母和菌丝中受到差异调节

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摘要

The pathogenic yeast Candida albicans possesses a reductive iron uptake system which is active in iron-restricted conditions. The sequestration of iron by this mechanism initially requires the reduction of free iron to the soluble ferrous form, which is catalysed by ferric reductase proteins. Reduced iron is then taken up into the cell by a complex of a multicopper oxidase protein and an iron transport protein. Multicopper oxidase proteins require copper to function and so reductive iron and copper uptake are inextricably linked. It has previously been established that Fre10 is the major cell surface ferric reductase in C. albicans and that transcription of FRE10 is regulated in response to iron levels. We demonstrate here that Fre10 is also a cupric reductase and that Fre7 also makes a significant contribution to cell surface ferric and cupric reductase activity. It is also shown, for the first time, that transcription of FRE10 and FRE7 is lower in hyphae compared to yeast and that this leads to a corresponding decrease in cell surface ferric, but not cupric, reductase activity. This demonstrates that the regulation of two virulence determinants, the reductive iron uptake system and the morphological form of C. albicans, are linked. Copyright (C) 2011 John Wiley & Sons, Ltd.
机译:致病性酵母白色念珠菌具有还原铁吸收系统,该系统在铁限制条件下具有活性。通过这种机制螯合铁最初需要将游离铁还原为可溶性亚铁形式,这是由铁还原酶蛋白催化的。然后,还原的铁被多铜氧化酶蛋白和铁转运蛋白的复合物吸收到细胞中。紫铜氧化酶蛋白需要铜发挥功能,因此还原性铁和铜的吸收密不可分。先前已经确定,Fre10是白色念珠菌中主要的细胞表面铁还原酶,并且响应铁水平来调节FRE10的转录。我们在这里证明,Fre10也是铜还原酶,并且Fre7也对细胞表面的铁和铜还原酶活性做出了重要贡献。还首次显示,与酵母菌相比,FRE10和FRE7的转录在菌丝中较低,并且这会导致细胞表面的铁还原酶活性相应降低,而不是铜还原酶活性降低。这表明两个毒力决定因素的调节,即还原铁的吸收系统和白色念珠菌的形态学形式是相关的。版权所有(C)2011 John Wiley&Sons,Ltd.

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