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Mixed-mode resins: taking shortcut in downstream processing of raw-starch digesting α-amylases

机译:混合模式树脂:在生淀粉消化α-淀粉酶的下游加工中走捷径

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Bacillus licheniformis 9945a α-amylase is known as a potent enzyme for raw starch hydrolysis. In this paper, a mixed mode Nuvia cPrime? resin is examined with the aim to improve the downstream processing of raw starch digesting amylases and exploit the hydrophobic patches on their surface. This resin combines hydrophobic interactions with cation exchange groups and as such the presence of salt facilitates hydrophobic interactions while the ion-exchange groups enable proper selectivity. α-Amylase was produced using an optimized fed-batch approach in a defined media and significant overexpression of 1.2?g L?1 was achieved. This single step procedure enables simultaneous concentration, pigment removal as well as purification of amylase with yields of 96% directly from the fermentation broth.
机译:地衣芽孢杆菌9945aα-淀粉酶是一种有效的生淀粉水解酶。本文采用了混合模式的Nuvia cPrime吗?为了改善粗淀粉消化淀粉酶的下游加工并利用其表面上的疏水性斑块,对树脂进行了检查。该树脂将疏水性相互作用与阳离子交换基团结合在一起,因此盐的存在有助于疏水性相互作用,而离子交换基团则可以实现适当的选择性。使用优化的分批补料方法在限定的培养基中生产α-淀粉酶,并实现了1.2?g L ?1 的显着过表达。这个单一步骤的过程可以同时进行浓缩,色素去除以及淀粉酶的纯化,直接从发酵液中获得96%的产率。

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