van de Kamp M, Canters G W, Wijmenga S S, Lommen A, Hilbers C W, Nar H, Messerschmidt A, Huber R
Department of Chemistry, Gorlaeus Laboratories, Leiden University, The Netherlands.
Biochemistry. 1992 Oct 27;31(42):10194-207. doi: 10.1021/bi00157a006.
Complete sequential 1H and 15N resonance assignments for the reduced Cu(I) form of the blue copper protein azurin (M(r) 14,000, 128 residues) from Pseudomonas aeruginosa have been obtained at pH 5.5 and 40 degrees C by using homo- and heteronuclear two-dimensional (2D) and three-dimensional (3D) nuclear magnetic resonance spectroscopic experiments. Combined analysis of a 3D homonuclear 1H Hartmann-Hahn nuclear Overhauser (3D 1H HOHAHA-NOESY) spectrum and a 3D heteronuclear 1H nuclear Overhauser 1H[15N] single-quantum coherence (3D 1H[15N] NOESY-HSQC) spectrum proved especially useful. The latter spectrum was recorded without irradiation of the water signal and provided for differential main chain amide (NH) exchange rates. NMR data were used to determine the secondary structure of azurin in solution. Comparison with the secondary structure of azurin obtained from X-ray analysis shows a virtually complete resemblance; the two beta-sheets and a 3(10)-alpha-3(10) helix are preserved at 40 degrees C, and most loops contain well-defined turns. Special findings are the unexpectedly slow exchange of the Asn-47 and Phe-114 NH's and the observation of His-46 and His-117 N epsilon 2H resonances. The implications of these observations for the assignment of azurin resonance Raman spectra, the rigidity of the blue copper site, and the electron transfer mechanism of azurin are discussed.
通过使用同核和异核二维(2D)及三维(3D)核磁共振光谱实验,已在pH 5.5和40℃条件下获得了来自铜绿假单胞菌的蓝色铜蛋白天青蛋白(Mr 14,000,128个残基)还原态Cu(I)形式的完整连续1H和15N共振归属。对三维同核1H Hartmann-Hahn核Overhauser(3D 1H HOHAHA-NOESY)谱和三维异核1H核Overhauser 1H[15N]单量子相干(3D 1H[15N] NOESY-HSQC)谱的联合分析证明特别有用。后者的谱是在不照射水信号的情况下记录的,并提供了不同的主链酰胺(NH)交换速率。NMR数据用于确定溶液中天青蛋白的二级结构。与通过X射线分析获得的天青蛋白二级结构进行比较,结果显示几乎完全相似;两个β折叠和一个3(10)-α-3(10)螺旋在40℃时得以保留,并且大多数环含有明确的转角。特别的发现是Asn-47和Phe-114的NH交换异常缓慢,以及观察到His-46和His-117的Nε2H共振。讨论了这些观察结果对天青蛋白共振拉曼光谱归属、蓝色铜位点的刚性以及天青蛋白电子转移机制的影响。