Chuprina V P, Rullmann J A, Lamerichs R M, van Boom J H, Boelens R, Kaptein R
Bijvoet Center for Biomolecular Research, University of Utrecht, The Netherlands.
J Mol Biol. 1993 Nov 20;234(2):446-62. doi: 10.1006/jmbi.1993.1598.
The structure of the complex of lac repressor headpiece and an 11 base-pair lac half-operator has been determined by NMR spectroscopy and restrained Molecular Dynamics calculations. In total 508 distances were derived from two-dimensional nuclear Overhauser enhancement measurements, 260 of which are within the headpiece, 212 within the operator and 36 between operator and headpiece. An equilibrium restrained Molecular Dynamics calculation of the complex in aqueous solution, spanning 85 picoseconds, has been used to analyze the structure. Configuration sampling by an annealing procedure has been undertaken as well in order to estimate the precision of the structure determination. Our data confirm the results of previous two-dimensional NMR studies that the orientation of the recognition helix of lac repressor in the major groove of DNA with respect to the operator dyad axis is opposite to the orientation found in complexes of other DNA binding proteins of the helix-turn-helix class. We find a number of tight contacts between the protein and the operator that are in agreement with the available genetic and biochemical data. The anchoring of lac headpiece on the operator is similar to that of other repressors. Other features are unique for lac headpiece: relative few direct hydrogen bonds between side-chains and bases; extensive apolar contacts; many direct and water-bridged contacts to phosphates from residues in or close to the recognition helix. Overall, an interconnected set of interactions is observed, involving base-specific contacts, phosphate contacts, intra-protein and water-bridged hydrogen bonds. Several of these interactions appear to be dynamic, i.e. fluctuating in time, rather than static.
通过核磁共振光谱法和受限分子动力学计算,已确定了乳糖阻遏蛋白头部结构域与一个11碱基对的乳糖半操纵基因复合物的结构。总共从二维核Overhauser效应测量中获得了508个距离数据,其中260个在头部结构域内,212个在操纵基因内,36个在操纵基因与头部结构域之间。已使用在水溶液中对该复合物进行的长达85皮秒的平衡受限分子动力学计算来分析其结构。还通过退火程序进行了构象采样,以估计结构测定的精度。我们的数据证实了先前二维核磁共振研究的结果,即乳糖阻遏蛋白识别螺旋在DNA大沟中相对于操纵基因二分轴的方向与其他螺旋-转角-螺旋类DNA结合蛋白复合物中发现的方向相反。我们发现蛋白质与操纵基因之间存在许多紧密接触,这与现有的遗传和生化数据一致。乳糖阻遏蛋白头部结构域在操纵基因上的锚定与其他阻遏蛋白相似。其他特征是乳糖阻遏蛋白头部结构域所特有的:侧链与碱基之间的直接氢键相对较少;广泛的非极性接触;识别螺旋内或附近的残基与磷酸之间有许多直接和水桥连接的接触。总体而言,观察到一组相互关联的相互作用,包括碱基特异性接触、磷酸接触、蛋白质内和水桥连接的氢键。其中一些相互作用似乎是动态的,即随时间波动,而不是静态的。