Malmendal A, Carlstrom G, Hambraeus C, Drakenberg T, Forsen S, Akke M
Physical Chemistry 2, Lund University, P.O. Box 124, S-221 00 Lund, Sweden.
Biochemistry. 1998 Feb 24;37(8):2586-95. doi: 10.1021/bi971798a.
The influence of amino acid sequence and structural context on the backbone dynamics of EF-hand calcium-binding loops was investigated using 15N spin relaxation measurements on the calcium-free state of the calbindin D9k mutant (A14D+A15Delta+P20Delta+N21G+P43M), in which the N-terminal pseudo-EF-hand loop, characteristic of S100 proteins, was engineered so as to conform with the C-terminal consensus EF-hand loop. The results were compared to a previous study of the apo state of the wild-type-like P43G calbindin D9k mutant. In the helical regions, the agreement with the P43G data is excellent, indicating that the structure and dynamics of the protein core are unaffected by the substitutions in the N-terminal loop. In the calcium-binding loops, the flexibility is drastically decreased compared to P43G, with the modified N-terminal loop showing a motional restriction comparable to that of the surrounding helixes. As in P43G, the motions in the C-terminal loop are less restricted than in the N-terminal loop. Differences in key hydrogen-bonding interactions correlate well with differences in dynamics and offer insights into the relationship between structure and dynamics of these EF-hand loops. It appears that the entire N-terminal EF-hand is built to form a rigid structure that allows calcium binding with only minor rearrangements and that the structural and dynamical properties of the entire EF-hand--rather than the loop sequence per se--is the major determinant of loop flexibility in this system.
利用对钙结合蛋白D9k突变体(A14D+A15Δ+P20Δ+N21G+P43M)无钙状态的15N自旋弛豫测量,研究了氨基酸序列和结构背景对EF手型钙结合环骨架动力学的影响。在该突变体中,对S100蛋白特有的N端假EF手环进行了改造,使其与C端一致的EF手环相符。将结果与之前对野生型样P43G钙结合蛋白D9k突变体的无载脂蛋白状态的研究进行了比较。在螺旋区域,与P43G数据的一致性非常好,表明蛋白质核心的结构和动力学不受N端环中取代的影响。在钙结合环中,与P43G相比,灵活性大幅降低,修饰后的N端环显示出与周围螺旋相当的运动限制。与P43G一样,C端环中的运动限制比N端环中的小。关键氢键相互作用的差异与动力学差异密切相关,并为这些EF手环的结构与动力学之间的关系提供了见解。似乎整个N端EF手型结构被构建成一个刚性结构,允许钙结合时只需进行微小的重排,并且整个EF手型的结构和动力学性质——而不是环序列本身——是该系统中环灵活性的主要决定因素。