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Fast and economic immobilization methods described for non-commercial Pseudomonas lipases

机译:针对非商业性假单胞菌脂肪酶的快速经济固定化方法

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Background There is an increasing interest to seek new enzyme preparations for the development of new products derived from bioprocesses to obtain alternative bio-based materials. In this context, four non-commercial lipases from Pseudomonas species were prepared, immobilized on different low-cost supports, and examined for potential biotechnological applications. Results To reduce costs of eventual scaling-up, the new lipases were obtained directly from crude cell extracts or from growth culture supernatants, and immobilized by simple adsorption on Accurel EP100, Accurel MP1000 and Celite?545. The enzymes evaluated were LipA and LipC from Pseudomonas sp. 42A2, a thermostable mutant of LipC, and LipI.3 from Pseudomonas CR611, which were produced in either homologous or heterologous hosts. Best immobilization results were obtained on Accurel EP100 for LipA and on Accurel MP1000 for LipC and its thermostable variant. Lip I.3, requiring a refolding step, was poorly immobilized on all supports tested (best results for Accurel MP1000). To test the behavior of immobilized lipases, they were assayed in triolein transesterification, where the best results were observed for lipases immobilized on Accurel MP1000. Conclusions The suggested protocol does not require protein purification and uses crude enzymes immobilized by a fast adsorption technique on low-cost supports, which makes the method suitable for an eventual scaling up aimed at biotechnological applications. Therefore, a fast, simple and economic method for lipase preparation and immobilization has been set up. The low price of the supports tested and the simplicity of the procedure, skipping the tedious and expensive purification steps, will contribute to cost reduction in biotechnological lipase-catalyzed processes.
机译:背景技术寻求新的酶制剂以开发源自生物过程的新产品以获得替代的基于生物的材料的兴趣日益增长。在这种情况下,制备了来自假单胞菌属的四种非商业脂肪酶,固定在不同的低成本载体上,并检查了其潜在的生物技术应用。结果为了降低最终放大的成本,新的脂肪酶直接从粗细胞提取物或生长培养上清液中获得,并通过简单吸附固定在Accurel EP100,Accurel MP1000和Celite?545上。评价的酶是假单胞菌属的LipA和LipC。 42A2是LipC的热稳定突变体,来自假单胞菌CR611的LipI.3是在同源或异源宿主中产生的。对于LipA,其在Accurel EP100上的使用,对于LipC及其耐热稳定的变体,在Accurel MP1000上获得了最佳的固定效果。唇部I.3(需要重新折叠)未牢固固定在所有测试的支撑物上(Accurel MP1000的最佳结果)。为了测试固定化脂肪酶的行为,对它们进行了三油精酯交换反应的分析,在Accurel MP1000上固定化脂肪酶的结果最佳。结论所建议的方案不需要纯化蛋白质,而是使用通过快速吸附技术固定在低成本载体上的粗酶固定,这使得该方法适合最终扩大规模用于生物技术应用。因此,已经建立了用于脂肪酶制备和固定的快速,简单和经济的方法。所测试的载体的低价格和操作的简便性,省去了繁琐且昂贵的纯化步骤,将有助于降低生物技术脂肪酶催化的工艺的成本。

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