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Dipeptidyl aminopeptidase processing and biosynthesis of alkaline extracellular protease from Yarrowia lipolytica

机译:来自Yarrowia Lipolytica的碱性细胞外蛋白酶的二肽氨基肽酶加工和生物合成

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Alkaline extracellular protease (AEP) from Yarrowia lipolytica is synthesized as a precursor with a 157 aa prepro-region. Signal peptide cleavage was shown to occur after Ala15 by N-terminal amino acid radiosequencing of the largest intracellular AEP precursor. AEP proteolytic activity was not required for AEP processing. After a change of the putative active site Ser to Ala, inactive AEP with the same mobility on SDS-PAGE as wild-type mature AEP was secreted. The role of dipeptidyl aminopeptidase (DPAPase) activity in AEP processing was also investigated. Mutations early in the -X-Ala- and -X-Pro- dipeptide stretch (Pro17 to Met which should prevent DPAPase processing and Ala19 to Val which should allow removal of only the first dipeptide) did not prevent synthesis of active mature AEP nor did use of the DPAPase inhibitor Pro-boroPro. Deletion of the entire dipeptide stretch (Ala16 to Pro33) resulted in intracellular accumulation of an AEP precursor, which surprisingly was not glycosylated, and little or no secretion of AEP-related polypeptides. Expression of AEP in wild-type and dpp1 dap2 Saccharomyces cerevisiae strains (lacking both the Golgi and vacuolar DPAPases) resulted in secretion of only mature AEP and no AEP precursors. Transit times and levels of AEP secretion were similar for both strains. These results indicate that the KEX2-like cleavage after Lys156-Arg157, which yields mature active AEP can occur in the absence of DPAPase processing and that DPAPase processing is not necessary for secretion of mature active AEP.
机译:来自Yarrowia Lipolytica的碱性细胞外蛋白酶(AEP)作为具有157AA预处理区域的前体合成。显示信号肽裂解在最大的细胞内AP前体的N-末端氨基酸辐射序列后Ala15发生。 AEP处理不需要AEP蛋白水解活性。在调用推定的活性位点SER至ALA之后,在SDS-PAGE上具有相同的移动性的无效AEP,因为野生型成熟AEP被分泌。还研究了二肽氨基氨基肽酶(DPAPase)活性在AP处理中的作用。在-X-Ala-and -X-an-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-pro-met,它应该允许除去第一个二肽的ala19,而是仅允许除去第一个二肽)并没有阻止合成活跃成熟的AEP,也不是使用DPAPase抑制剂Pro-Boropro。缺失整个二肽拉伸(ALA16至PRO33)导致AP前体的细胞内积聚,令人惊讶的是不是糖基化的,并且很少或没有分泌AEP相关的多肽。 AEP在野生型和DPP1 DAP2酿酒酵母中的表达(缺乏Golgi和真空dpapases)导致仅仅是成熟的AEP和NO AEP前体的分泌。两种菌株的AEP分泌分泌时间和水平相似。这些结果表明,Lys156-Arg157之后的Kex2样裂解,其产生成熟活性AEP可以在没有DPAPase处理的情况下发生,并且DPAPase处理对于分泌成熟活性AEP不需要。

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