Otzen Daniel E, Oliveberg Mikael
Department of Life Sciences, Aalborg University, Sohngaardsholmsvej 49, Aalborg, DK-9000, Sweden.
J Mol Biol. 2002 Feb 1;315(5):1231-40. doi: 10.1006/jmbi.2001.5300.
Although numerous studies have been directed at understanding early folding events through the characterization of folding intermediates, there are few reports on the very late folding events, i.e. on the events taking place on the native side of the folding barrier and on alternative conformations of the folded state. To shed further light on these issues, we have characterized by protein engineering the structure of an expanded but native-like intermediate that accumulates transiently in the unfolding reaction of the small protein S6 in the presence of SDS. The results show that the SDS micelles attack the native protein in the dead-time of the denaturation experiment, causing an expansion of the hydrophobic core prior to the major unfolding transition. We distinguish two forms of the unfolding intermediate that are correlated with the micellar structure. With spherical micelles, the expansion is seen mainly as a weakening of the interactions which anchor the two alpha-helices to the core of the S6 structure. With cylindrical micelles, prevalent at higher SDS concentrations, the expansion is more global and produces a species which closely resembles the transition-state structure for unfolding in GdmCl. Despite the highly weakened core, the micelle-associated intermediate displays cooperative unfolding, indicating a significant structural plasticity of the species on the native side of the folding barrier in the presence of SDS.
尽管众多研究致力于通过对折叠中间体的表征来理解早期折叠事件,但关于非常晚期的折叠事件,即在折叠屏障的天然态一侧发生的事件以及折叠态的替代构象的报道却很少。为了进一步阐明这些问题,我们通过蛋白质工程对一种扩展但类似天然态的中间体的结构进行了表征,该中间体在SDS存在下小蛋白S6的解折叠反应中短暂积累。结果表明,SDS胶束在变性实验的停滞期攻击天然蛋白,在主要解折叠转变之前导致疏水核心的扩展。我们区分了与胶束结构相关的两种解折叠中间体形式。对于球形胶束,扩展主要表现为将两个α螺旋锚定到S6结构核心的相互作用的减弱。对于在较高SDS浓度下普遍存在的圆柱形胶束,扩展更具全局性,并产生一种与在GdmCl中解折叠的过渡态结构非常相似的物种。尽管核心高度弱化,但与胶束相关的中间体仍表现出协同解折叠,这表明在SDS存在下,该物种在折叠屏障的天然态一侧具有显著的结构可塑性。