Khan N, Graslund A, Ehrenberg A, Shriver J
Department of Medical Biochemistry, School of Medicine, Southern Illinois University, Carbondale 62901.
Biochemistry. 1990 Jun 19;29(24):5743-51. doi: 10.1021/bi00476a015.
The solution structure of the 22-residue peptide hormone motilin has been studied by circular dichroism and two-dimensional 1H nuclear magnetic resonance spectroscopy. Circular dichroism spectra indicate the presence of alpha-helical secondary structure in aqueous solution, and the secondary structure can be stabilized with hexafluoro-2-propanol. Sequence-specific assignments of the proton NMR spectrum of porcine motilin in 30% hexafluoro-2-propanol have been made by using two-dimensional NMR techniques. All backbone proton resonances (NH and alpha CH) and most of the side-chain resonances have been assigned by using double-quantum-filtered COSY, RELAYED-COSY, and NOESY experiments. Simulations of NOESY cross-peak intensities as a function of mixing time indicate that spin diffusion has a relatively small effect in peptides the size of motilin, thereby allowing the use of long mixing times to confidently make assignments and delineate secondary structure. Sequential alpha CH-NH and NH-NH NOESY connectivities were observed over a significant portion of the length of the peptide. A number of medium-range NOESY cross-peaks indicate that the peptide is folded into alpha-helix from Glu9 to Lys20, which agrees favorably with the 50% helical content determined from CD measurements. The intensities of selected NOESY cross-peaks relative to corresponding diagonal peaks were used to estimate a rotational correlation time of approximately 2.5 ns for the peptide, indicating that the peptide exists as a monomer in solution under the conditions used here.
已通过圆二色性和二维¹H核磁共振光谱研究了22个残基的肽激素胃动素的溶液结构。圆二色性光谱表明在水溶液中存在α-螺旋二级结构,并且该二级结构可用六氟-2-丙醇稳定。通过使用二维核磁共振技术对猪胃动素在30%六氟-2-丙醇中的质子核磁共振谱进行了序列特异性归属。使用双量子滤波COSY、接力COSY和NOESY实验对所有主链质子共振(NH和α CH)以及大多数侧链共振进行了归属。对NOESY交叉峰强度作为混合时间函数的模拟表明,自旋扩散对胃动素大小的肽的影响相对较小,从而允许使用长混合时间来可靠地进行归属并描绘二级结构。在肽的相当一部分长度上观察到了连续的α CH-NH和NH-NH NOESY连接性。一些中程NOESY交叉峰表明该肽从Glu9到Lys20折叠成α-螺旋,这与通过CD测量确定的50%螺旋含量非常吻合。相对于相应对角峰的选定NOESY交叉峰的强度用于估计该肽的旋转相关时间约为2.5 ns,表明在此处使用的条件下该肽在溶液中以单体形式存在。