Polshakov V I, Birdsall B, Frenkiel T A, Gargaro A R, Feeney J
Division of Molecular Structure, National Institute for Medical Research, The Ridgeway, Mill Hill, London, United Kingdom.
Protein Sci. 1999 Mar;8(3):467-81. doi: 10.1110/ps.8.3.467.
We have determined the three-dimensional solution structure of the complex of Lactobacillus casei dihydrofolate reductase and the anticancer drug trimetrexate. Two thousand seventy distance, 345 dihedral angle, and 144 hydrogen bond restraints were obtained from analysis of multidimensional NMR spectra recorded for complexes containing 15N-labeled protein. Simulated annealing calculations produced a family of 22 structures fully consistent with the constraints. Several intermolecular protein-ligand NOEs were obtained by using a novel approach monitoring temperature effects of NOE signals resulting from dynamic processes in the bound ligand. At low temperature (5 degrees C) the trimethoxy ring of bound trimetrexate is flipping sufficiently slowly to give narrow signals in slow exchange, which give good NOE cross peaks. At higher temperature these broaden and their NOE cross peaks disappear thus allowing the signals in the lower-temperature spectrum to be identified as NOEs involving ligand protons. The binding site for trimetrexate is well defined and this was compared with the binding sites in related complexes formed with methotrexate and trimethoprim. No major conformational differences were detected between the different complexes. The 2,4-diaminopyrimidine-containing moieties in the three drugs bind essentially in the same binding pocket and the remaining parts of their molecules adapt their conformations such that they can make effective van der Waals interactions with essentially the same set of hydrophobic amino acids, the side-chain orientations and local conformations of which are not greatly changed in the different complexes (similar chi1 and chi2 values).
我们已经确定了干酪乳杆菌二氢叶酸还原酶与抗癌药物三甲曲沙复合物的三维溶液结构。通过对含15N标记蛋白的复合物记录的多维核磁共振谱进行分析,获得了2070个距离、345个二面角和144个氢键约束。模拟退火计算产生了一组22个与约束完全一致的结构。通过一种监测结合配体动态过程产生的NOE信号温度效应的新方法,获得了几个分子间蛋白质-配体NOE。在低温(5摄氏度)下,结合的三甲曲沙的三甲氧基环翻转得足够慢,在慢交换中给出窄信号,从而给出良好的NOE交叉峰。在较高温度下,这些峰会变宽,它们的NOE交叉峰消失,从而使低温谱中的信号被识别为涉及配体质子的NOE。三甲曲沙的结合位点定义明确,并与甲氨蝶呤和甲氧苄啶形成的相关复合物中的结合位点进行了比较。在不同的复合物之间未检测到主要的构象差异。三种药物中含2,4-二氨基嘧啶的部分基本上结合在同一个结合口袋中,它们分子的其余部分调整其构象,以便它们能够与基本上相同的一组疏水氨基酸进行有效的范德华相互作用,在不同的复合物中,这些氨基酸的侧链取向和局部构象变化不大(χ1和χ2值相似)。