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Recovery of Bacillus cereus cyclodextrin glycosyltransferase and recycling of phase components in an aqueous two-phase system using thermo-separating polymer

机译:使用热分离聚合物回收蜡状芽孢杆菌环糊精糖基转移酶并回收水两相系统中的相成分

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摘要

An aqueous two-phase system (ATPS) composed of thermo-separating polymer and salt was deployed in this study for the recovery of Bacillus cereus cyclodextrin glycosyltransferase (CGTase) and recycling of phase components simultaneously. CGTase was recovered using ATPS over two successive extractions and the recycled phase-forming polymers were utilized for subsequent extraction. ATPSs constructed by different molecular weight of the thermo-separating copolymers ethylene oxide-propylene oxide (EOPO) and potassium phosphate salt were tested for their effects on partitioning of the enzyme CGTase into top phase. Besides, the effects of phase composition, tie-line length (TLL), crude load, volume ratio (V R) and pH of the ATPS on the partitioning behavior of CGTase were studied to achieve optimum purification condition. Copolymer recovery was measured in each successive ATPS. The optimum purification of enzyme CGTase was obtained in the EOPO 3900/phosphate ATPS comprising TLL of 41.2% (w/w), V R of 1.25, and crude load of 20% (w/w) and pH of 7.0. CGTase from B. cereus was successfully purified by the ATPS up to 13.1-fold with a yield of 87% and the EOPO 3900 could be recovered up to 80% after the first enzyme extraction from ATPS. © 2012 Elsevier B.V. All rights reserved.
机译:在这项研究中部署了由热分离聚合物和盐组成的两相水系统(ATPS),用于蜡状芽孢杆菌环糊精糖基转移酶(CGTase)的回收和相成分的同时回收。使用ATPS在两次连续萃取中回收了CGTase,并将回收的相形成聚合物用于后续萃取。测试了由不同分子量的热分离共聚物环氧乙烷-环氧丙烷(EOPO)和磷酸钾盐构成的ATPS对CGTase酶分配到顶层的影响。此外,研究了ATPS的相组成,结合线长度(TLL),粗负载,体积比(V R)和pH对CGTase分配行为的影响,以达到最佳纯化条件。在每个连续的ATPS中测量共聚物的回收率。在EOPO 3900 /磷酸盐ATPS中获得了酶CGTase的最佳纯化,该酶的TLL为41.2%(w / w),VR为1.25,粗负载为20%(w / w),pH值为7.0。蜡状芽孢杆菌的CGTase可通过ATPS成功纯化至多13.1倍,产率为87%,在首次从ATPS中提取酶后,EOPO 3900的回收率可高达80%。 ©2012 Elsevier B.V.保留所有权利。

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