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Intra- and intermolecular events direct the propeptide-mediated maturation of the Candida albicans secreted aspartic proteinase Sap1p

机译:分子间事件引导肽介导的念珠菌蛋白酶分泌的天冬氨酸蛋白酶SAP1p的介导的成熟

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Pathogenic yeasts of the genus Candida secrete aspartic proteinases (Sap) which are synthesized as preproenzymes. Expression of the C. albicansSAP1 gene lacking the propeptide-coding region in the methylotrophic yeast Pichia pastoris does not lead to the secretion of the enzyme into the culture supernatant, but results in an accumulation of recombinant protein in the cell. Co-expression in this system of the unattached propeptide from Sap1p, as well as from other Saps, restored Sap1p secretion. A deletion analysis revealed that only a 12?aa sequence in the propeptide, corresponding to a highly conserved region in all Sap propeptides, was necessary and sufficient to produce a large amount of Sap1p in culture supernatant. No Sap1p was secreted when Sap1p was produced with a propeptide carrying an F to D mutation in the identified 12?aa sequence. However, the simultaneous production of equivalent amounts of Sap1p and His-tagged Sap1p (H6-Sap1p) with a mutated and a non-mutated propeptide, respectively, led to the secretion of both proteins in a ratio of approximately 1:2. The restoration of Sap1p secretion occurred at the expense of secretion of H6-Sap1p since the total activity was comparable to that of strains producing only H6-Sap1p with a non-mutated propeptide. In contrast, the proteolytic activity of strains secreting Sap1p and H6-Sap1p both with a functional propeptide was twice that of strains producing either Sap1p or H6-Sap1p alone, and the two enzymes were found in an equivalent amount in the culture supernatant. Altogether, these results show that the propeptide can only function once and that the maturation of recombinant C. albicans secreted aspartic proteinase Sap1p is directed through a combination of intra- and inter-molecular pathways.
机译:Candida属的病原酵母分泌天冬氨酸蛋白酶(SAP),其作为预备酶合成。缺乏缺乏甲基嗜型酵母Pichia牧场主肽的C. albicanssap1基因的表达不会导致酶分泌到培养上清液中,但导致细胞中重组蛋白的积累。该系统中的具有与SAP1P的未附加的肽的系统中的共表达,以及其他SAP,恢复了SAP1P分泌。缺失分析表明,在所有SAP肽中的肽相对应的肽中只有12?AA序列,是必要的,并且足以在培养上清液中产生大量的SAP1P。当用鉴定的12?AA序列中携带F至D突变的肽产生SAP1P,没有SAP1P分泌。然而,同时产生具有突变和非突变的肽的等效量的SAP1P和其标记的SAP1P(H6-SAP1P)导致两种蛋白质的分泌约1:2。由于总活动与仅产生非突变的肽的菌株的总活性相当,SAP1P分泌的恢复发生在H6-SAP1p的分泌,因为总活性与仅产生H6-SAP1P的菌株的菌株相当。相反,分泌SAP1P和H6-SAP1P的菌株的蛋白水解活性与官能肽仅为单独产生SAP1P或H6-SAP1P的菌株的两倍,并且在培养上清液中以当量的量发现两种酶。总共,这些结果表明,铅化肽只能起作一次,并且重组C. albicans分泌的天冬氨酸蛋白酶SAP1p的成熟通过内和分子间途径的组合。

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