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首页> 外文期刊>New biotechnology >Simultaneous and selective decarboxylation of L-serine and deamination of L-phenylalanine in an amino acid mixture-a means of separating amino acids for synthesizing biobased chemicals
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Simultaneous and selective decarboxylation of L-serine and deamination of L-phenylalanine in an amino acid mixture-a means of separating amino acids for synthesizing biobased chemicals

机译:氨基酸混合物中L-丝氨酸的同时选择性脱羧和L-苯丙氨酸的脱氨基-分离氨基酸以合成生物基化学品的手段

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摘要

Amino acids (AAs) obtained from the hydrolysis of biomass-derived proteins are interesting feedstocks for the chemical industry. They can be prepared from the byproduct of biofuel production and agricultural wastes. They are rich in functionalities needed in petrochemicals, providing the opportunity to save energy, reagents, and process steps. However, their separation is required before they can be applied for further applications. Electrodialysis (ED) is a promising separation method, but its efficiency needs to be improved when separating AAs with similar isoelectric points. Thus, specific conversions are required to form product with different charges. Here we studied the enzymatic conversions which can be used as a means to aid the ED separation of neutral AAs. A model mixture containing L-serine, L-phenylalanine and L-methionine was used. The reactions of L-serine decarboxylase and L-phenylalanine ammonia-lyase were employed to specifically convert serine and phenylalanine into ethanolamine and trans-cinnamic acid. At the isoelectric point of methionine (pH 5.74), the charge of ethanolamine and trans-cinnamic acid are + 1 and -1, therefore facilitating potential separation into three different streams by electrodialysis. Here the enzyme kinetics, specificity, inhibition and the operational stabilities were studied, showing that both enzymes can be applied simultaneously to aid the ED separation of neutral AAs.
机译:从生物质衍生的蛋白质水解获得的氨基酸(AAs)是化学工业中有趣的原料。它们可以由生物燃料生产和农业废物的副产品制备。它们具有石化产品所需的丰富功能,可提供节省能源,试剂和工艺步骤的机会。然而,在将它们应用于进一步的应用之前,需要将它们分开。电渗析(ED)是一种很有前途的分离方法,但是当分离具有相似等电点的AA时,其效率需要提高。因此,需要特定的转换以形成具有不同电荷的产品。在这里,我们研究了酶促转化,可将其用作辅助ED分离中性AA的方法。使用含有L-丝氨酸,L-苯丙氨酸和L-蛋氨酸的模型混合物。用L-丝氨酸脱羧酶和L-苯丙氨酸氨裂合酶的反应将丝氨酸和苯丙氨酸特异性地转化为乙醇胺和反式肉桂酸。在蛋氨酸的等电点(pH 5.74)上,乙醇胺和反式肉桂酸的电荷分别为+1和-1,因此有助于通过电渗析将电势分成三个不同的流。在这里,对酶的动力学,特异性,抑制作用和操作稳定性进行了研究,结果表明两种酶可以同时应用,以帮助中性AA的ED分离。

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