Hoerner Joshua K, Xiao Hui, Kaltashov Igor A
Department of Chemistry, University of Massachusetts, Amherst, Massachusetts 01003, USA.
Biochemistry. 2005 Aug 23;44(33):11286-94. doi: 10.1021/bi0509548.
Structural and dynamic properties of a partially folded conformation (A-state) of ubiquitin are studied using amide hydrogen exchange in solution (HDX) and mass spectrometric detection. A clear distinction between the native state of the protein and the A-state can be made when HDX is carried out in a semicorrelated regime. Convoluted exchange patterns are interpreted with the aid of HDX simulations in a three-state system (highly structured, partially unstructured, and fully unstructured states). The data clearly indicate a highly dynamic character of the non-native state. Furthermore, combination of HDX and protein ion fragmentation in the gas phase [by means of collision-induced dissociation (CAD)] is used to evaluate the conformational stability of various protein segments specifically in the molten globular state. Chain flexibility appears to be distributed very unevenly in this non-native conformation. The highest degree of structural disorder is displayed by the C-terminal segment (Gly(53)-Gly(76)), which was previously suggested to form a transient alpha-helix. The least dynamic segment of ubiquitin in the A-state is Thr(9)-Glu(18) (which was previously suggested to form a stable nativelike beta-strand), with the adjacent segments exhibiting somewhat diminished conformational stability. The study also demonstrates the power of mass spectrometry as a tool in providing conformer-specific information about the structure and dynamics of both native and non-native protein states coexisting in solution under equilibrium.
利用溶液中的酰胺氢交换(HDX)和质谱检测,研究了泛素部分折叠构象(A态)的结构和动力学性质。当在半相关体系中进行HDX时,可以明确区分蛋白质的天然状态和A态。借助三态系统(高度结构化、部分非结构化和完全非结构化状态)中的HDX模拟,对复杂的交换模式进行了解释。数据清楚地表明了非天然状态具有高度动态的特征。此外,HDX与气相中蛋白质离子碎片化(通过碰撞诱导解离(CAD))相结合,用于评估各种蛋白质片段在熔融球状状态下的构象稳定性。在这种非天然构象中,链的柔韧性分布非常不均匀。C末端片段(Gly(53)-Gly(76))表现出最高程度的结构无序,该片段先前被认为会形成一个瞬时α螺旋。泛素在A态中最不具动态性的片段是Thr(9)-Glu(18)(该片段先前被认为会形成一条稳定的类似天然的β链),其相邻片段的构象稳定性有所降低。该研究还证明了质谱作为一种工具的强大之处,它能够提供关于在平衡状态下溶液中共存的天然和非天然蛋白质状态的结构和动力学的构象特异性信息。