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Engineering Bacillus pumilus alkaline serine protease to increase its low-temperature proteolytic activity by directed evolution

机译:工程化短小芽孢杆菌碱性丝氨酸蛋白酶以通过定向进化增加其低温蛋白水解活性

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摘要

BackgroundMesophilic alkaline serine proteases from various bacteria have been commercially applied in a range of industries owing to their high catalytic efficiency and wide substrate specificity. However, these proteases have an optimal catalytic temperature of approximately 50 °C, and their activity decreases significantly at low temperature. Therefore, to enhance their cold activity, it is necessary to improve the catalytic performance of these proteases at low temperature. The alkaline serine protease (DHAP) from Bacillus pumilus BA06 is a typical mesophilic enzyme, which has demonstrated great potential in various industrial applications. Here we attempted to improve the cold activity of DHAP via directed evolution.
机译:背景技术来自各种细菌的嗜温碱性丝氨酸蛋白酶由于其高催化效率和广泛的底物特异性而已在商业上被广泛应用。但是,这些蛋白酶的最佳催化温度约为50°C,在低温下它们的活性会大大降低。因此,为了增强其冷活性,必须改善这些蛋白酶在低温下的催化性能。来自短小芽孢杆菌BA06的碱性丝氨酸蛋白酶(DHAP)是一种典型的嗜温酶,在各种工业应用中已显示出巨大的潜力。在这里,我们试图通过定向进化来改善DHAP的寒冷活动。

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