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Proteases HtrA and HtrB for α-amylase secreted from Bacillus subtilis in secretion stress

机译:枯草芽孢杆菌在分泌压力下分泌的α-淀粉酶蛋白酶HtrA和HtrB

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HtrA and HtrB are two important proteases across species. In biotechnological industries, they are related to degradation of secreted heterologous proteins from bacteria, especially in the case of overproduction of α-amylases in Bacillus subtilis . Induction of HtrA and HtrB synthesis follows the overproduction of α-amylases in B. subtilis . This is different from the order usually observed in B. subtilis , i.e., the production of proteases is prior to the secretion of proteins. This discrepancy suggests three possibilities: (i) HtrA and HtrB are constantly synthesized from the end of the exponential phase, and then are synthesized more abundantly due to secretion stress; (ii) There is a hysteresis mechanism that holds HtrA and HtrB back from their large amount of secretion before the overproduction of α-amylases; (iii) Heterologous amylases could be a stress to B. subtilis leading to a general response to stress. In this review, we analyze the literature to explore these three possibilities. The first possibility is attributed to the regulatory pathway of CssR-CssS. The second possibility is because sigma factor σ ~(D) plays a role in the overproduction of α-amylases and is subpopulation dependent with the switch between “ON” and “OFF” states that is fundamental for a bistable system and a hysteresis mechanism. Thus, sigma factor σ ~(D) helps to hold HtrA and HtrB back from massive secretion before the overproduction of α-amylases. The third possibility is that several sigma factors promote the secretion of proteases at the end of the exponential phase of growth under the condition that heterologous amylases are considered as a stress.
机译:HtrA和HtrB是跨物种的两个重要蛋白酶。在生物技术工业中,它们与细菌分泌的异源蛋白质的降解有关,尤其是在枯草芽孢杆菌中过量生产α-淀粉酶的情况下。 HtrA和HtrB合成的诱导遵循枯草芽孢杆菌中α-淀粉酶的过量生产。这不同于通常在枯草芽孢杆菌中观察到的顺序,即蛋白酶的产生是在蛋白质分泌之前。这种差异表明了三种可能性:(i)HtrA和HtrB从指数期末开始不断合成,然后由于分泌压力而更丰富地合成; (ii)有一个滞后机制,可在HαA淀粉酶生产过剩之前阻止HtrA和HtrB大量分泌; (iii)异源淀粉酶可能是枯草芽孢杆菌的胁迫,导致对胁迫的总体反应。在这篇综述中,我们分析了文献以探索这三种可能性。第一种可能性归因于CssR-CssS的调控途径。第二种可能性是因为sigma因子σ〜(D)在α-淀粉酶的过量生产中起作用,并且取决于“ ON”和“ OFF”状态之间的切换,其子种群取决于双稳态系统和磁滞机制的基础。因此,σ因子(〜D)有助于在过量生产α-淀粉酶之前阻止HtrA和HtrB大量分泌。第三种可能性是,在异源淀粉酶被认为是一种胁迫的条件下,几个sigma因子会在生长的指数阶段结束时促进蛋白酶的分泌。

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