Redfield C, Boyd J, Smith L J, Smith R A, Dobson C M
Inorganic Chemistry Laboratory, University of Oxford, England.
Biochemistry. 1992 Nov 3;31(43):10431-7. doi: 10.1021/bi00158a003.
15N NOE, T1, and T2 measurements have been carried out on uniformly 15N-labeled human interleukin-4. Analysis of the results in terms of order parameters (S2) shows that although the helical core of this four-helix-bundle protein exists as a well-defined structure with limited conformational flexibility (S2 congruent to 0.9), other regions of the molecule experience substantial fluctuations in the conformation of the main chain (S2 = 0.3-0.8). These regions include both the N- and C-termini and two of the loops joining the helices. The majority of these internal motions are fast compared with the overall rotational correlation time (tau R = 7.6 ns at 35 degrees C) and are localized in regions that are relatively ill-defined in the NMR structures previously determined for this protein [Smith, L. J., Redfield, C., Boyd, J., Lawrence, G. M. P., Edwards, R. G., Smith, R. A. G., & Dobson, C. M. (1992) J. Mol. Biol. 224, 899-904]. Other motions are on a slower time scale and appear to be associated with two of the three disulfide bonds and the beta-sheet region in the protein. The dynamic properties of interleukin-4 in solution have been compared with features of the X-ray structures of other four-helix-bundle proteins. The results suggest that the dynamic properties observed here may be general for this class of proteins and may be significant for the interpretation of both their structural and functional properties.
已对均匀 15N 标记的人白细胞介素 - 4 进行了 15N 核 Overhauser 效应(NOE)、T1 和 T2 测量。根据序参数(S2)对结果进行分析表明,尽管这种四螺旋束蛋白的螺旋核心以具有有限构象灵活性的明确结构存在(S2 约等于 0.9),但分子的其他区域主链构象存在显著波动(S2 = 0.3 - 0.8)。这些区域包括 N 端和 C 端以及连接螺旋的两个环。与整体旋转相关时间相比(35℃时τR = 7.6 ns),这些内部运动中的大多数都很快,并且局限于先前针对该蛋白质确定的 NMR 结构中相对不明确的区域[史密斯,L. J.,雷德菲尔德,C.,博伊德,J.,劳伦斯,G. M. P.,爱德华兹,R. G.,史密斯,R. A. G.,& 多布森,C. M.(1992)《分子生物学杂志》224,899 - 904]。其他运动时间尺度较慢,似乎与该蛋白质中的三个二硫键中的两个以及β - 折叠区域有关。已将溶液中白细胞介素 - 4 的动力学性质与其他四螺旋束蛋白的 X 射线结构特征进行了比较。结果表明,此处观察到的动力学性质可能是这类蛋白质共有的,并且对于解释它们的结构和功能性质可能具有重要意义。