Shan Bing, Eliezer David, Raleigh Daniel P
Department of Chemistry, State University of New York at Stony Brook, Stony Brook, New York 11794-3400, USA.
Biochemistry. 2009 Jun 9;48(22):4707-19. doi: 10.1021/bi802299j.
Interest in the structural and dynamic properties of unfolded proteins has increased in recent years owing to continued interest in protein folding and misfolding. Knowledge of the unfolded state under native conditions is particularly important for obtaining a complete picture of the protein folding process. The C-terminal domain of protein L9 is a globular alpha, beta protein with an unusual mixed parallel and antiparallel beta-strand structure. The folding kinetics and equilibrium unfolding of CTL9 strongly depend on pH, and follow a simple two state model. Both the native and the unfolded state can be significantly populated at pH 3.8 in the absence of denaturant, allowing the native state and the unfolded state to be characterized under identical conditions. Backbone (15)N, (13)C, (1)H and side-chain (13)C(beta), (1)H(beta) chemical shifts, amide proton NOEs, and (15)N R(2) relaxation rates were obtained for the two conformational states at pH 3.8. All the data indicate that the pH 3.8 native state is well folded and is similar to the native state at neutral pH. There is significant residual structure in the pH 3.8 unfolded state. The regions corresponding to the two native state alpha-helices show strong preference to populate helical phi and psi angles. The segment that connects alpha-helix 2 and beta-strand 2 has a significant tendency to form non-native alpha-helical structure. Comparison with the pH 2.0 unfolded state and the urea unfolded state indicates that the tendency to adopt both native and non-native helical structure is stronger at pH 3.8, demonstrating that the unfolded state of CTL9 under native-like conditions is more structured. The implications for the folding of CTL9 are discussed.
近年来,由于对蛋白质折叠和错误折叠的持续关注,人们对未折叠蛋白质的结构和动力学性质的兴趣有所增加。了解天然条件下的未折叠状态对于全面了解蛋白质折叠过程尤为重要。蛋白质L9的C末端结构域是一种球状α、β蛋白,具有不寻常的混合平行和反平行β链结构。CTL9的折叠动力学和平衡去折叠强烈依赖于pH值,并遵循简单的两态模型。在没有变性剂的情况下,pH 3.8时天然态和未折叠态都能大量存在,从而可以在相同条件下对天然态和未折叠态进行表征。获得了pH 3.8时两种构象状态的主链(15)N、(13)C、(1)H以及侧链(13)Cβ、(1)Hβ化学位移、酰胺质子NOE和(15)N R2弛豫率。所有数据表明,pH 3.8的天然态折叠良好,与中性pH下的天然态相似。pH 3.8的未折叠态存在显著的残余结构。与两个天然态α螺旋相对应的区域强烈倾向于填充螺旋的φ和ψ角。连接α螺旋2和β链2的片段有显著的倾向形成非天然α螺旋结构。与pH 2.0的未折叠态和尿素诱导的未折叠态相比,表明在pH 3.8时采用天然和非天然螺旋结构的倾向更强,这表明CTL9在类天然条件下的未折叠态结构更有序。文中讨论了其对CTL折叠的影响。