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Control of morphogenesis, protease secretion and gene expression in Candida albicans by the preferred nitrogen source ammonium

机译:通过优选的氮源铵对念珠菌蛋白质糖苷中的形态发生,蛋白酶分泌和基因表达

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Micro-organisms sense the availability of nutrients in their environment to control cellular behaviour and the expression of transporters and enzymes that are required for the utilization of these nutrients. In the pathogenic yeast Candida albicans, the preferred nitrogen source ammonium suppresses the switch from yeast to filamentous growth in response to certain stimuli, and it also represses the secretion of proteases, which are required for the utilization of proteins as an alternative nitrogen source. To investigate whether C. albicans senses the availability of ammonium in the extracellular environment or if ammonium uptake into the cell is required to regulate morphogenesis and gene expression, we compared the behaviour of wild-type cells and ammonium uptake-deficient mutants in the presence and absence of extracellular ammonium. Arginine-induced filamentous growth was suppressed by ammonium in the wild-type, but not in mutants lacking the ammonium permeases Mep1 and Mep2. Similarly, ammonium suppressed protease secretion and extracellular protein degradation in the wild-type, but not in mutants lacking the ammonium transporters. By comparing the gene expression profiles of C. albicans grown in the presence of low or high ammonium concentrations, we identified a set of genes whose expression is controlled by nitrogen availability. The repression of genes involved in the utilization of alternative nitrogen sources, which occurred under ammonium-replete conditions in the wild-type, was abrogated in mep1Δ mep2Δ mutants. These results demonstrate that C. albicans does not respond to the presence of sufficient amounts of the preferred nitrogen source ammonium by sensing its availability in the environment. Instead, ammonium has to be taken up into the cell to control morphogenesis, protease secretion and gene expression.
机译:微生物感觉到其环境中营养成分的可用性,以控制细胞行为和用于利用这些营养素所需的转运蛋白和酶的表达。在致病酵母念珠菌蛋白白醛糖醛糖中,优选的氮源铵抑制从酵母到丝状生长的切换,响应于某些刺激,并且还抑制蛋白酶的分泌,这是利用蛋白质作为替代氮源所需的蛋白酶的分泌。为了探讨C. albicans是否感测细胞外环境中铵的可用性,或者如果铵摄取到细胞中来调节形态发生和基因表达,我们将野生型细胞和铵摄取缺陷型突变体中的行为进行比较没有细胞外铵。通过野生型铵抑制精氨酸诱导的丝状生长,但在缺乏铵允许MEP1和MEP2的突变体中抑制了突变体。类似地,氨基抑制蛋白酶分泌和野生型细胞外蛋白质降解,但不在缺乏铵转运蛋白的突变体中。通过比较在低或高铵浓度存在下生长的白醛的基因表达谱,我们鉴定了一组基因,其表达由氮可用性控制。在野生型中,在野生型铵 - 新型条件下发生的替代氮源的基因的抑制在MEP1ΔMEP2δ突变体中消除。这些结果表明,通过感测其环境的可用性,C. albicans不会响应足够量的优选的氮源铵。相反,必须将铵用于细胞中以控制形态发生,蛋白酶分泌和基因表达。

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