Katayama Hiroo, McGill Mitchell, Kearns Andrew, Brzozowski Marek, Degner Nicholas, Harnett Bliss, Kornilayev Boris, Matković-Calogović Dubravka, Holyoak Todd, Calvet James P, Gogol Edward P, Seed John, Fisher Mark T
Department of Biochemistry and Molecular Biology, University of Kansas Medical Center, Kansas City, KS, USA.
J Struct Funct Genomics. 2009 Mar;10(1):57-66. doi: 10.1007/s10969-008-9053-8. Epub 2008 Dec 12.
Obtaining a proper fold of affinity tagged chimera proteins can be difficult. Frequently, the protein of interest aggregates after the chimeric affinity tag is cleaved off, even when the entire chimeric construct is initially soluble. If the attached protein is incorrectly folded, chaperone proteins such as GroEL bind to the misfolded construct and complicate both folding and affinity purification. Since chaperonin/osmolyte mixtures facilitate correct folding from the chaperonin, we explored the possibility that we could use this intrinsic binding reaction to advantage to refold two difficult-to-fold chimeric constructs. In one instance, we were able to recover activity from a properly folded construct after the construct was released from the chaperonin in the presence of osmolytes. As an added advantage, we have also found that this method involving chaperonins can enable researchers to decide (1) if further stabilization of the folded product is required and (2) if the protein construct in question will ever be competent to fold with osmolytes.
获得具有适当折叠的亲和标签嵌合蛋白可能很困难。通常,即使整个嵌合构建体最初是可溶的,在嵌合亲和标签被切割掉后,感兴趣的蛋白质也会聚集。如果附着的蛋白质折叠错误,伴侣蛋白(如GroEL)会与错误折叠的构建体结合,使折叠和亲和纯化都变得复杂。由于伴侣蛋白/渗透剂混合物有助于从伴侣蛋白中正确折叠,我们探讨了利用这种内在结合反应来重新折叠两种难以折叠的嵌合构建体的可能性。在一个实例中,当构建体在渗透剂存在下从伴侣蛋白中释放后,我们能够从正确折叠的构建体中恢复活性。另外一个优势是,我们还发现这种涉及伴侣蛋白的方法能够使研究人员确定:(1)是否需要对折叠产物进行进一步稳定化处理;(2)所研究的蛋白质构建体是否能够在渗透剂存在的情况下成功折叠。