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Divergence of Stp1 and Stp2 Transcription Factors in Candida albicans Places Virulence Factors Required for Proper Nutrient Acquisition under Amino Acid Control

机译:Stp1和Stp2转录因子在白色念珠菌中的差异将氨基酸控制下需要适当营养获取的毒力因子

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摘要

Candida albicans possesses a plasma membrane-localized sensor of extracellular amino acids. Here, we show that in response to amino acids, this sensor induces the proteolytic processing of two latent transcription factors, Stp1 and Stp2. Processing removes negative regulatory motifs present in the N-terminal domains of these factors. Strikingly, Stp1 and Stp2 exhibit a clear dichotomy in the genes they transactivate. The shorter active form of Stp2 activates genes required for amino acid uptake. The processed form of Stp1 activates genes required for degradation of extracellular protein and uptake of peptides, and cells lacking Stp1 do not express the secreted aspartyl protease SAP2 or the oligopeptide transporter OPT1. Consequently, stp1 null mutants are unable to grow on media with protein as the sole nitrogen source. Cells expressing the STP1* allele that encodes a protein lacking the inhibitory N-terminal domain constitutively express SAP2 and OPT1 even in the absence of extracellular proteins or peptides. Also, we show that Stp1 levels, but not Stp2 levels, are downregulated in the presence of millimolar concentrations of extracellular amino acids. These results define the hierarchy of regulatory mechanisms that differentially control two discrete pathways for the assimilation of nitrogen.
机译:白色念珠菌具有胞外氨基酸的质膜定位传感器。在这里,我们表明响应氨基酸,此传感器诱导两个潜在的转录因子Stp1和Stp2的蛋白水解过程。加工去除存在于这些因子的N末端结构域中的负调控基序。令人惊讶的是,Stp1和Stp2在它们激活的基因中表现出明显的二分法。较短的Stp2活性形式可激活氨基酸摄取所需的基因。 Stp1的加工形式激活细胞外蛋白降解和肽摄取所需的基因,而缺乏Stp1的细胞不表达分泌的天冬氨酰蛋白酶SAP2或寡肽转运蛋白OPT1。因此,stp1空突变体无法在以蛋白质为唯一氮源的培养基上生长。即使没有细胞外蛋白或肽,表达STP1 *等位基因的细胞也组成性表达SAP2和OPT1,STP1 *等位基因编码的蛋白缺乏抑制性N末端结构域。而且,我们显示在存在毫摩尔浓度的细胞外氨基酸的情况下,Stp1水平而不是Stp2水平下调。这些结果定义了调节机制的层次,该调节机制有差别地控制着两个不连续的途径来吸收氮。

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