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首页> 外文期刊>Biotechnology Letters >Role of the C-terminal pro-domain of aqualysin I in the maturation and translocation of the precursor across the cytoplasmic membrane in escherichia coli
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Role of the C-terminal pro-domain of aqualysin I in the maturation and translocation of the precursor across the cytoplasmic membrane in escherichia coli

机译:Aqualysin I的C末端前结构域在大肠杆菌中前体在细胞质膜上的成熟和转运中的作用

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摘要

Aqualysin I, which is a subtilisin-type, extracellular protease secreted by Thermus aquaticus YT-1, is synthesized as a unique precursor bearing pro-domains at both N- and C-terminus of the mature protease domain as well as an N-terminal signal peptide. To investigate the function of the C-terminal pro-domain in maturation and export pathway of the precursor in E. coli cells, aqualysin I variants were constructed in which deletion mutants of the C-terminal pro-domain lacking its own signal peptide were inserted into pIN-III-ompA3. When E.coli harboring wild type and mutant plasmids were induced by 0.2 mM IPTG, active aqualysin I was produced by heat treatment at 65 deg C. Aqualysin I precursors with deletions of more than 5 amino acid residues at the C-terminal end of pro-domain were much more rapidly processed than that of wild type, indicating that the C-terminal pro-domain functions as a inhibitor for processing of aqualysin I precursor. With the type, most of aqualysin I was present in membrane fraction (probably the outer membrane), whereas for the truncated mutants, it remained in the cytoplasm, indicating that for deletion mutants, their precursors, expressed in cells were not translocated across the cytoplasmic membrane, despite the existence of an N-terminal signal peptide.
机译:Aqualysin I是枯草杆菌蛋白酶型的,由水生栖热菌(Thermus aquaticus YT-1)分泌的细胞外蛋白酶,被合成为在成熟蛋白酶结构域的N和C端以及N端均带有前结构域的独特前体信号肽。为了研究C末端前结构域在大肠杆菌细胞前体的成熟和出口途径中的功能,构建了Aqualysin I变体,其中插入了缺少其自身信号肽的C末端前结构域的缺失突变体进入pIN-III-ompA3。当通过0.2 mM IPTG诱导带有野生型和突变质粒的大肠杆菌时,通过在65摄氏度下进行热处理产生了活性的水溶蛋白I。水溶蛋白I前体在脯氨酸的C末端缺失了5个以上的氨基酸残基-结构域比野生型的处理快得多,表明C-末端前结构域起着抑制水溶蛋白I前体的作用。对于这种类型,大多数水溶蛋白I存在于膜级分(可能是外膜)中,而对于截短的突变体,它仍保留在细胞质中,这表明对于缺失突变体,它们在细胞中表达的前体不会跨细胞质转运。膜,尽管存在N端信号肽。

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