Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.
Protein Sci. 2010 Jan;19(1):94-8. doi: 10.1002/pro.286.
Published data on the characterization of unfolded proteins in dilute solutions in aqueous guanidine hydrochloride are analyzed to show that the data are not fit by either the random flight or wormlike chain models for linear chains. The analysis includes data on the intrinsic viscosity, root-mean-square radius of gyration, from small-angle X-ray scattering, and hydrodynamic radius, from the translational diffusion coefficient. It is concluded that residual structure consistent with that deduced from nuclear magnetic resonance on these solutions can explain the dilute solution results in a consistent manner through the presence of ring structures, which otherwise have an essentially flexible coil conformation. The ring structures could be in a state of continual flux and rearrangement. Calculation of the radius of gyration for the random-flight model gives a similar reduction of this measure for chains joined at their endpoints, or those containing loop with two dangling ends, each one-fourth the total length of the chain. This relative insensitivity to the details of the ring structure is taken to support the behavior observed across a range of proteins.
对在稀水溶液中展开蛋白质的特性进行了分析,以展示数据不符合随机漫步或线状链蠕虫链模型。分析包括关于固有粘度、均方根回转半径、小角 X 射线散射和从平移扩散系数得出的流体力学半径的数据。得出的结论是,与这些溶液的核磁共振推断出的残余结构一致,可以通过存在环状结构以一致的方式解释稀溶液结果,否则环状结构具有基本的灵活线圈构象。环结构可能处于连续流动和重排的状态。对于随机漫步模型的回转半径的计算给出了在其端点连接的链或具有两个悬垂端的环的情况下,该度量的类似减少,每个链的总长度的四分之一。这种对环结构细节的相对不敏感被认为支持了在一系列蛋白质中观察到的行为。