Andersen K V, Poulsen F M
Carlsberg Laboratorium, Kemisk Afdeling, Copenhagen, Denmark.
J Biomol NMR. 1993 May;3(3):271-84. doi: 10.1007/BF00212514.
The 3D structure of bovine recombinant acyl-coenzyme A binding protein has been determined using multidimensional heteronuclear magnetic resonance spectroscopy in a study that combines investigations of 15N-labeled and unlabeled protein. The present structure determination is a refinement of the structure previously determined (Andersen, K.V. and Poulsen, F.M. (1992) J. Mol. Biol., 226, 1131-1141). It is based on 1096 distance restraints and 124 dihedral angle restraints of which 69 are for phi-angles and 8 for chiral centers and 47 for prochiral centers. The new experimental input for the structure determination has provided an increase of 263 distance restraints, 5 phi-angle restraints, and 32 chi-angle restraints in 2 chiral centers, and 31 prochiral centers restraining an additional 23 chi 1, 8 chi 2, and 1 chi 3 angles. The increase of 300 distance and dihedral angle restraints representing an additional 30% of input parameters for the structure determination has been shown to be in agreement with the first structure. A set of 29 structures has been calculated and each of the structures has been compared to a mean structure to give an atomic root mean square deviation of 0.44 +/- 0.12 A (1 A is 0.1 nm) for the backbone atoms C, C alpha, and N in the four alpha-helices A1, residues 4-15, A2, residues 21-36, A3, residues 51-62 and A4, residues 65-84. The loop-region of residues Gly45-Lys50 could not be defined by the restraints obtained by NMR. The program PRONTO has been used for the spectrum analysis, assignment of the individual nuclear Overhauser effects, the integration of the cross peaks, and the measurement of the coupling constants. The programs DIANA, X-PLOR and INSIGHT have been used in the structure calculations and evaluations.
在一项结合了对15N标记和未标记蛋白质研究的实验中,利用多维异核磁共振波谱法测定了牛重组酰基辅酶A结合蛋白的三维结构。目前的结构测定是对先前测定结构(Andersen, K.V.和Poulsen, F.M.(1992年)《分子生物学杂志》,226卷,1131 - 1141页)的优化。它基于1096个距离约束和124个二面角约束,其中69个是针对φ角,8个是针对手性中心,47个是针对前手性中心。结构测定的新实验数据增加了263个距离约束、5个φ角约束,以及在2个手性中心和31个前手性中心的32个χ角约束,这些约束还额外限制了23个χ1角、8个χ2角和1个χ3角。增加的300个距离和二面角约束(占结构测定输入参数的30%)已被证明与第一个结构相符。已计算出一组29个结构,并且将每个结构与平均结构进行比较,得出四个α螺旋(A1,残基4 - 15;A2,残基21 - 36;A3,残基51 - 62;A4,残基65 - 84)中主链原子C、Cα和N的原子均方根偏差为0.44±0.12 Å(1 Å为0.1纳米)。残基Gly45 - Lys50的环区无法通过NMR获得的约束来定义。程序PRONTO已用于光谱分析、单个核Overhauser效应的归属、交叉峰的积分以及耦合常数的测量。程序DIANA、X - PLOR和INSIGHT已用于结构计算和评估。