Pietruszka N, Galaev I Y, Kumar A, Brzozowski Z K, Mattiasson B
Department of Biotechnology, Center for Chemistry and Chemical Engineering, Lund University, P.O. Box 124, Lund, S-221 00, Sweden.
Biotechnol Prog. 2000 May-Jun;16(3):408-15. doi: 10.1021/bp000013g.
A new type of polymer, starch-modified by acrylamide, has been developed for application in aqueous two-phase systems (ATPS) for protein separation. Partial hydrolysis and acrylamide modification of starch to different degrees make it suitable for forming ATPS with poly(ethylene glycol) in a moderate concentration range. The potential of the polymer to form ATPS with the thermoprecipitating copolymer of 1-vinylimidazole with N-vinylcaprolactam (poly-VI/VCL) has been evaluated. The thermoprecipitation properties of poly-VI/VCL and Cu(II)-loaded poly-VI/VCL have been studied for application in metal affinity partitioning. The formation of ATPS with Cu(II)-loaded thermoprecipitating copolymer was critically achieved for poly-VI/VCL (10/90) copolymer in under-loaded metal concentrations. With the Cu(II)-loaded copolymer, poly-VI/VCL in the top phase and modified starch in the bottom phase, the ATPS formed was used for the purification of alpha-amylase inhibitor from wheat meal. The protein partitioned in the top phase and phase-separated polymer-protein complex could be precipitated by salt. The protein inhibitor was recovered with a yield of 75%.
一种新型聚合物,即丙烯酰胺改性淀粉,已被开发用于水相两相体系(ATPS)中进行蛋白质分离。淀粉的部分水解和不同程度的丙烯酰胺改性使其适合在中等浓度范围内与聚乙二醇形成ATPS。已评估了该聚合物与1-乙烯基咪唑与N-乙烯基己内酰胺的热沉淀共聚物(聚-VI/VCL)形成ATPS的潜力。研究了聚-VI/VCL和负载铜(II)的聚-VI/VCL在金属亲和分配中的热沉淀性质。对于负载金属浓度较低的聚-VI/VCL(10/90)共聚物,关键是要与负载铜(II)的热沉淀共聚物形成ATPS。利用负载铜(II)的共聚物,上相中为聚-VI/VCL,下相中为改性淀粉,所形成的ATPS用于从小麦粉中纯化α-淀粉酶抑制剂。分配在上相中的蛋白质和相分离的聚合物-蛋白质复合物可通过盐沉淀。蛋白质抑制剂的回收率为75%。