Kusch Harald, Engelmann Susanne, Albrecht Dirk, Morschhäuser Joachim, Hecker Michael
Institut für Molekulare Infektionsbiologie, Julius-Maximilians-Universität, Würzburg, Germany.
Proteomics. 2007 Mar;7(5):686-97. doi: 10.1002/pmic.200600575.
An efficient oxidative stress response (OSR) is important for the facultative pathogenic yeast Candida albicans to survive within the human host. We used a large scale 2-D protein gel electrophoresis approach to analyze the stress response mechanisms of C. albicans after treatment with hydrogen peroxide and the thiol oxidizing agent, diamide. Quantitation of in vivo protein synthesis after pulse labeling of the proteins with radioactive L-[35S]-methionine resulted in characteristic proteome signatures for hydrogen peroxide and diamide with significant overlap of 21 up-regulated proteins for both stressors. Among the induced proteins were enzymes with known antioxidant functions like catalase or thioredoxin reductase and a set of oxidoreductases. 2-D gel analysis of mutants in the CAP1 gene revealed that the synthesis of 12 proteins is controlled by the oxidative stress regulator Cap1p. Stressing its importance for the C. albicans OSR, all 12 proteins were also induced after oxidative challenge by hydrogen peroxide or diamide.
有效的氧化应激反应(OSR)对于兼性致病酵母白色念珠菌在人类宿主体内存活至关重要。我们采用大规模二维蛋白质凝胶电泳方法,分析了白色念珠菌在用过氧化氢和硫醇氧化剂二酰胺处理后的应激反应机制。在用放射性L-[35S]-甲硫氨酸对蛋白质进行脉冲标记后,对体内蛋白质合成进行定量分析,结果得到了过氧化氢和二酰胺的特征蛋白质组图谱,两种应激源有21种上调蛋白存在显著重叠。诱导蛋白中包括具有已知抗氧化功能的酶,如过氧化氢酶或硫氧还蛋白还原酶以及一组氧化还原酶。对CAP1基因突变体进行的二维凝胶分析表明,12种蛋白质的合成受氧化应激调节因子Cap1p控制。鉴于其对白色念珠菌OSR的重要性,在用过氧化氢或二酰胺进行氧化应激刺激后,所有这12种蛋白质也被诱导产生。