Tang Ming, Waring Alan J, Hong Mei
Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Chembiochem. 2008 Jun 16;9(9):1487-92. doi: 10.1002/cbic.200800005.
The site-specific motion of Arg residues in a membrane-bound disulfide-linked antimicrobial peptide, protegrin-1 (PG-1), was investigated by using magic-angle-spinning solid-state NMR spectroscopy to better understand the membrane insertion and lipid interaction of this cationic membrane-disruptive peptide. The C-H and N-H dipolar couplings and 13C chemical shift anisotropies were measured in the anionic POPE/POPG membrane, and were found to be reduced from the rigid-limit values by varying extents; this indicates the presence of segmental motion. An Arg residue at the beta-turn region of the peptide showed much weaker spin interactions, which indicates larger amplitudes of motion than an Arg residue in the beta-strand region of the peptide. This is consistent with the exposure of the beta turn to the membrane surface and the immersion of the beta strand in the hydrophobic middle of the membrane, and supports the previously proposed oligomerization of the peptide into beta barrels in the anionic membrane. The 13C T2 and 1H T(1rho) relaxation times indicate that the beta-turn backbone undergoes large-amplitude intermediate-timescale motion in the fluid phase of the membrane; this causes significant line broadening and loss of spectral intensity. This study illustrates the strong correlation between the dynamics and structure of membrane proteins, and the capability of solid-state NMR spectroscopy to provide detailed information on site-specific dynamics in complex membrane-protein assemblies.
利用魔角旋转固态核磁共振光谱研究了膜结合的二硫键连接抗菌肽protegrin-1(PG-1)中精氨酸(Arg)残基的位点特异性运动,以更好地理解这种阳离子膜破坏肽的膜插入和脂质相互作用。在阴离子型POPE/POPG膜中测量了C-H和N-H偶极耦合以及13C化学位移各向异性,发现它们相对于刚性极限值有不同程度的降低;这表明存在片段运动。肽β-转角区域的一个Arg残基表现出弱得多的自旋相互作用,这表明其运动幅度比肽β-链区域的一个Arg残基大。这与β-转角暴露于膜表面以及β-链浸入膜的疏水中间区域一致,并支持先前提出的肽在阴离子膜中寡聚形成β桶状结构的观点。13C T2和1H T(1rho)弛豫时间表明,β-转角主链在膜的流体相中经历大幅度的中间时间尺度运动;这导致谱线显著展宽和谱强度损失。这项研究说明了膜蛋白动力学与结构之间的强相关性,以及固态核磁共振光谱在提供复杂膜蛋白组装体中位点特异性动力学详细信息方面的能力。