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Analysis of secreted aspartic proteinases from Candida albicans: purification and characterization of individual Sap1, Sap2 and Sap3 isoenzymes

机译:来自念珠菌蛋白的分泌的天冬氨酸蛋白酶分析:单个SAP1,SAP2和SAP3同工酶的纯化和表征

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The recently discovered secreted aspartic proteinase multi-gene (SAP) family in Candida albicans has complicated assessment of proteolytic activity as a factor in the onset and development of Candida infections. Differential expression of the SAP genes under various conditions, as well as possible variation in the properties of the individual isoenzymes, have consequences for immunological detection, for targeted drug design and possibly for pathogenicity. It is therefore important to be able to monitor Sap isoenzyme profiles in different strains of C. albicans cultures, and to know the biochemical properties of each isoenzyme. We have employed a simple purification protocol based on strong anion exchange chromatography for the direct analysis of C. albicans Sap isoenzymes from culture filtrates, as well as recovery of individual Sap1, Sap2 and Sap3 products. In the case of Sap1, this involved development of an overexpression system using the pEMBLyex4 vector transformed into Saccharomyces cerevisiae. The C albicans strains ATCC 10231 and 10261 were shown to produce different ratios of Sap2 and Sap3 under the same conditions. Analysis of all three purified proteins by gel electrophoresis, immunoblotting and proteinase assays which were designed to evaluate pH dependence, thermal stability and substrate specificity revealed similar but distinct properties for each isoenzyme. Although Sap3 was shown to be antigenically more similar to Sap2 than was Sap1, it was less similar in terms of thermal stability and activity at low pH, being more stable and more active.
机译:在念珠菌的最近发现的分泌的天冬氨酸蛋白酶多基因(SAP)家族在蛋白水解活性的复杂评估中作为念珠菌感染的发病和发育的一个因素。 SAP基因在各种条件下的差异表达,以及个体同工酶性质的可能变化,对靶向药物设计具有免疫检测的后果,并且可能用于致病性。因此重要的是能够监测不同菌株C.醛糖型培养物中的SAP同工酶谱,并知道每种同工酶的生化特性。我们采用了一种基于强阴离子交换色谱法的简单纯化方案,用于从培养滤液中直接分析C. albicans SAP同工酶,以及恢复单独的SAP1,SAP2和SAP3产品。在SAP1的情况下,这涉及使用Pemblyex4载体转化成酿酒酵母的过表达系统的发展。在相同的条件下显示C耳染蛋白菌株ATCC 10231和10261在相同的条件下产生不同的SAP2和SAP3比例。通过凝胶电泳,免疫印迹和蛋白酶测定的所有三种纯化蛋白质分析,所述免疫印迹和蛋白酶测定旨在评估pH依赖性,热稳定性和底物特异性显示出每个同工酶的相似但不同的性质。尽管SAP3被抗原更类似于SAP2而不是SAP1,但在低pH下的热稳定性和活性方面较小,更稳定,更活跃。

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