Morikis D, Lepre C A, Wright P E
Department of Molecular Biology, Scripps Research Institute, La Jolla, CA 92037.
Eur J Biochem. 1994 Jan 15;219(1-2):611-26. doi: 10.1111/j.1432-1033.1994.tb19977.x.
Homonuclear two-dimensional and three-dimensional 1H-NMR spectroscopy has been utilized to study the 15.9-kDa protein soybean leghemoglobin. NMR experiments were performed on the diamagnetic carbon monoxide complex at two temperatures and two pH values. Sequence-specific assignments have been made for 94% of the backbone and approximately 70% of the expected side-chain resonances. The secondary structure of leghemoglobin in solution has been determined on the basis of NOE connectivity patterns, hydrogen exchange and chemical-shift analyses. Leghemoglobin consists of seven helices and, unlike mammalian myoglobins, is missing the D helix. Instead an extended loop, the CE loop, is observed which might have importance for ligand entry into and exit from the protein interior. The hydrogen exchange behavior for the F helix and at the beginning of the A helix suggests different dynamic stability compared to other helical regions in leghemoglobin. Population of a second protein conformation, in which there is perturbation at the A-G-H helix interface, is observed at low pH.
同核二维和三维¹H-NMR光谱已被用于研究15.9 kDa的大豆根瘤血红蛋白。在两种温度和两种pH值下对抗磁性一氧化碳复合物进行了NMR实验。已对94%的主链和大约70%预期的侧链共振进行了序列特异性归属。基于NOE连接模式、氢交换和化学位移分析确定了溶液中根瘤血红蛋白的二级结构。根瘤血红蛋白由七个螺旋组成,与哺乳动物肌红蛋白不同,它缺少D螺旋。相反,观察到一个延伸的环,即CE环,它可能对配体进出蛋白质内部很重要。F螺旋和A螺旋起始处的氢交换行为表明,与根瘤血红蛋白中的其他螺旋区域相比,其动态稳定性不同。在低pH值下观察到第二种蛋白质构象的存在,其中A-G-H螺旋界面处存在扰动。