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Transient Association of the First Intermediate during the Refolding of Bovine Carbonic Anhydrase B

机译:牛碳酸酐酶B复性过程中第一中间体的瞬时缔合

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AbstractMany proteins which aggregate during refolding may form transiently populated aggregated states which do not reduce the final recovery of active species. However, the transient association of a folding intermediate will result in reduced refolding rates if the dissociation process occurs slowly. Previous studies on the refolding and aggregation of bovine carbonic anhydrase B (CAB) have shown that the molten globule first intermediate on the CAB folding pathway will form dimers and trimers prior to the formation of large aggregates (Cleland, J. L.; Wang, D. I. C.Biochemistry1990,29, 11072–11078; Cleland, J. L.; Wang, D. I. C. InProtein Refolding;Georgiou, G., De‐Bernardez‐Clark, E., Eds.; ACS Symposium Series 470; American Chemical Society: Washington, DC, 1991; pp 169–179). Refolding of CAB from 5 M guanidine hydrochloride (GuHCl) was achieved at conditions (CABf=10–33 μM, GuHClf=1.0 M) which allowed complete recovery of active protein as well as the formation of a transiently populated dimer of the molten globule intermediate on the refolding pathway. A kinetic analysis of CAB refolding provided insight into the mechanism of the association phenomenon. Using the kinetic results, a model of the refolding with transient association was constructed. By adjusting a single variable, the dimer dissociation rate constant, the model prediction fit both the experimentally determined active protein and dimer concentrations. The model developed in this analysis should also be applicable to the refolding of proteins which have been observed to form aggregates during
机译:摘要许多在复性过程中聚集的蛋白质可能形成瞬时填充的聚集状态,不会降低活性物种的最终回收率。然而,如果解离过程发生缓慢,折叠中间体的瞬时缔合将导致复性速率降低。先前对牛碳酸酐酶B(CAB)的复性和聚集的研究表明,CAB折叠途径上的熔融小球第一中间体会在形成大聚集体之前形成二聚体和三聚体(Cleland, J. L.;Wang, D. I. C.生物化学1990,29, 11072–11078;克莱兰,J.L.;Wang, D. I. C. InProtein 复性;Georgiou, G., De-Bernardez-Clark, E., 编辑;ACS 研讨会系列 470;美国化学学会:华盛顿特区,1991 年;第169-179页)。在条件([CAB]f=10–33μM,[GuHCl]f=1.0 M)下实现5 M盐酸胍(GuHCl)的CAB重折叠,这允许活性蛋白的完全恢复以及在复性途径上形成熔融小球中间体的瞬时填充二聚体。对CAB复性作用的动力学分析为研究关联现象的机制提供了见解。利用动力学结果,构建了具有瞬时关联的复性模型。通过调整单个变量,即二聚体解离速率常数,模型预测符合实验确定的活性蛋白和二聚体浓度。该分析中开发的模型也应该适用于蛋白质的复性,这些蛋白质在

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