Paradkar V M, Dordick J S
Department of Chemical and Biochemical Engineering, University of Iowa, Iowa City 52242.
Biotechnol Prog. 1991 Jul-Aug;7(4):330-4. doi: 10.1021/bp00010a007.
A novel methodology for coupling liquid-liquid extraction with affinity interaction has been developed to selectively and efficiently purify and separate glycoproteins. The basis for the separation is the selective extraction of glycoproteins from an aqueous solution into a reverse micellar organic phase by using concanavalin A (a sugar-binding lectin) as a facilitative carrier. Specifically, horseradish peroxidase (a common glycoprotein) can be bound to concanavalin A in an aqueous phase and then extracted into an AOT-isooctane organic phase with negligible loss in enzyme activity. Virtually no extraction of peroxidase occurs in the absence of concanavalin A. Electron spin resonance studies have shown that the large lectin-glycoprotein complex (96,000 daltons) resides in a nonaqueous environment within the reverse micelle, perhaps at the surfactant, water-pool interface; hence, extraction of the large complex is feasible. The facilitative extraction has been extended to selective transport of peroxidase from a mixture of peroxidase and alkaline phosphatase (a nonglycosylated protein). This results in an efficient separation strategy with a separation factor of 16.
一种将液-液萃取与亲和相互作用相结合的新方法已被开发出来,用于选择性地、高效地纯化和分离糖蛋白。分离的基础是通过使用伴刀豆球蛋白A(一种糖结合凝集素)作为促进载体,将糖蛋白从水溶液中选择性萃取到反胶束有机相中。具体而言,辣根过氧化物酶(一种常见的糖蛋白)可以在水相中与伴刀豆球蛋白A结合,然后被萃取到AOT-异辛烷有机相中,酶活性损失可忽略不计。在没有伴刀豆球蛋白A的情况下,几乎不会发生过氧化物酶的萃取。电子自旋共振研究表明,大的凝集素-糖蛋白复合物(96,000道尔顿)存在于反胶束的非水环境中,可能位于表面活性剂-水池界面处;因此,萃取大的复合物是可行的。促进萃取已扩展到从过氧化物酶和碱性磷酸酶(一种非糖基化蛋白)的混合物中选择性运输过氧化物酶。这产生了一种高效的分离策略,分离因子为16。