Ding Keyang, Louis John M, Gronenborn Angela M
Laboratory of Chemical Physics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, NIDDK, Building 5, Room 130, Bethesda, MD 20892, USA.
J Mol Biol. 2004 Jan 30;335(5):1299-307. doi: 10.1016/j.jmb.2003.11.042.
Understanding protein stability requires characterization of structural determinants of the folded and unfolded states. Many proteins are capable of populating partially folded states under specific solution conditions. Occasionally, coexistence of the folded and an unfolded state under non- or mildly denaturing conditions can be observed by NMR, allowing us to structurally probe these states under identical conditions. Here we report on a destabilized mutant of the B1 domain of protein G (GB1) whose equilibrium unfolding was systematically investigated. Backbone amide residual dipolar couplings (RDCs), the tryptophan Nepsilon-H resonance and the amide nitrogen transverse relaxation rates (R2s) for varying pH values and different temperatures were measured. The backbone amide RDCs indicate that prior to complete unfolding, two melting hot spots are formed at the turn around T11, L12 and K13 and the N terminus of the helix at A24 and T25. The RDCs for the low pH, thermally unfolded state of GB1 are very small and do not indicate the presence of any native-like structure. Amide nitrogen transverse relaxation rates for GB1 in the folded state at different temperatures exhibit large contributions from exchange processes and the associated dynamics display considerable heterogeneity. Our data provide clear evidence for intermediate conformations and multi-state equilibrium un/folding for this GB1 variant.
理解蛋白质稳定性需要对折叠态和未折叠态的结构决定因素进行表征。许多蛋白质在特定的溶液条件下能够形成部分折叠态。偶尔,通过核磁共振(NMR)可以观察到在非变性或轻度变性条件下折叠态和未折叠态的共存,这使我们能够在相同条件下对这些状态进行结构探测。在此,我们报道了对蛋白质G(GB1)的B1结构域的一个不稳定突变体进行的系统平衡去折叠研究。测量了不同pH值和不同温度下的主链酰胺剩余偶极耦合(RDC)、色氨酸Nε-H共振以及酰胺氮横向弛豫率(R2)。主链酰胺RDC表明,在完全去折叠之前,在T11、L12和K13周围的转角处以及A24和T25处螺旋的N端形成了两个解链热点。GB1在低pH值、热去折叠状态下的RDC非常小,没有表明存在任何类似天然结构的结构。GB1在折叠态下不同温度的酰胺氮横向弛豫率显示出交换过程的巨大贡献,并且相关动力学表现出相当大的异质性。我们的数据为这种GB1变体的中间构象和多态平衡去折叠提供了明确证据。