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Characterization of the rate-limiting step of the secretion of Bacillus subtilis α-amylase overproduced during the exponential phase of growth

机译:枯草芽孢杆菌α-淀粉酶分泌的速率限制步骤,其在生长的指数阶段期间过量诱导的

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The Bacillus subtilis α-amylase gene, amyE, was expressed under the regulated control of sacR, the levansucrase leader region. The gene fusion including the complete amyE coding sequence with the signal peptide sequence was integrated into the chromosome of a degU32(Hy) strain deleted of the sacB DNA fragment. In this genetic context, α-amylase is produced in the culture supernatant at a high level (2% of total protein) during the exponential phase of growth upon induction by sucrose. Pulse-chase experiments showed that the rate-limiting step (t1/2 = 120 s) of the secretion process is the release of a cell-associated precursor form whose signal peptide has been cleaved. The efficiency of this ultimate step of secretion decreased dramatically in the presence of a metal chelator (EDTA) or when the cells were converted to protoplasts. The hypothesis that this step is tightly coupled with the folding process of α-amylase occurring within the cell wall environment was substantiated by in vitro folding studies. The unfolding-folding transition, monitored by the resistance to proteolysis, was achieved within the same time range (t1/2 = 60 s) and required the presence of calcium. This metal requirement could possibly be satisfied in vivo by the integrity of the cell wail. The t1/2 of the α-amylase release step is double that of levansucrase, although their folding rates are similar. This perhaps indicates that the passage through the cell wall may depend on parietal properties (e.g. metal ion binding and porosity) and on certain intrinsic properties of the protein (molecular mass and folding properties).
机译:芽孢杆菌淀粉芽孢杆菌α-淀粉酶基因,Amye在鼠左旋核糖酶引导区的侦察症的调控下表达。将包括具有信号肽序列的完整amye编码序列的基因融合被整合到Degu32(HY)菌株的染色体中缺失SacB DNA片段。在该遗传背景下,在蔗糖诱导时在培养上清液中以高水平(总蛋白质的2%)在培养上清液中产生α-淀粉酶。脉冲序列实验表明,分泌过程的速率限制步骤(T1 / 2 = 120s)是释放其信号肽已被切割的细胞相关前体形式。在金属螯合剂(EDTA)存在或将细胞转化为原生质体时,分泌的最终分泌步骤的效率显着降低。通过体外折叠研究证实了该步骤与细胞壁环境中发生的α-淀粉酶的折叠过程紧密联接的假设是通过体外折叠研究的。通过抗蛋白水解的抗折叠折叠过渡,在同一时间范围内(T1 / 2 = 60秒)和所需的存在钙。通过细胞哀号的完整性,可能在体内满足这种金属要求。 α-淀粉酶释放步骤的T1 / 2是Levansucrase的双倍,尽管它们的折叠速率相似。这可能表明通过细胞壁的通道可以取决于蛋白质(例如金属离子结合和孔隙率)的顶部性质(例如金属离子结合和孔隙率)。

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