Niccolai N, Pogliani L, Rossi C, Corti P, Gibbons W A
Biophys Chem. 1984 Oct;20(3):217-23. doi: 10.1016/0301-4622(84)87026-x.
Monoselective, Rio(SE), biselective, Rio(i,j), and nonselective proton spin-lattice relaxation rates have been measured for dilute solutions of gramicidin S in dimethyl sulfoxide and used to evaluate cross-relaxation rates (sigma ij = Rio(i,j)-Rio(SE)) and Fi ratios (Fi = Ri(NS)/Rio(SE)). The cross-relaxation parameters, sigma, and Fi ratios measured for backbone gramicidin S protons predict that the same correlation time, tau c = 1.2 X 10(-9)s, modulates all the dipolar proton-proton interactions and that these interactions represent the main source for the proton spin-lattice relaxation process. The larger relaxation rates for amide versus alpha-protons of the backbone are attributed to dipolar relaxation between 14N and its directly bonded protons and is an approximate measure of the extent of this. The intrabackbone proton-proton distances, evaluated from sigma values, were consistent with the antiparallel beta-plated sheet/beta II'-turn conformation previously proposed for gramicidin S in solution.
已对短杆菌肽S在二甲基亚砜中的稀溶液测量了单选择性、Rio(SE)、双选择性、Rio(i,j)和非选择性质子自旋晶格弛豫率,并用于评估交叉弛豫率(σij = Rio(i,j) - Rio(SE))和Fi比率(Fi = Ri(NS)/Rio(SE))。对主链短杆菌肽S质子测量的交叉弛豫参数σ和Fi比率预测,相同的相关时间τc = 1.2×10^(-9)s调节所有偶极质子-质子相互作用,并且这些相互作用是质子自旋晶格弛豫过程的主要来源。主链酰胺质子与α-质子相比更大的弛豫率归因于14N与其直接键合质子之间的偶极弛豫,并且是对此程度的一种近似度量。根据σ值评估的主链内质子-质子距离与先前提出的短杆菌肽S在溶液中的反平行β-折叠片层/βII'-转角构象一致。