South T L, Blake P R, Hare D R, Summers M F
Department of Chemistry and Biochemistry, University of Maryland, Baltimore County 21228.
Biochemistry. 1991 Jun 25;30(25):6342-9. doi: 10.1021/bi00239a036.
Two-dimensional NMR spectroscopic and computational methods were employed for the structure determination of an 18-residue peptide with the amino acid sequence of the C-terminal retroviral-type (r.t.) zinc finger domain from the nucleocapsid protein (NCP) of HIV-1 [Zn(HIV1-F2)]. Unlike results obtained for the first retroviral-type zinc finger peptide, Zn(HIV1-F1), [Summers et al. (1990) Biochemistry 29, 329], broad signals indicative of conformational lability were observed in the 1H NMR spectrum of Zn-(HIV1-F2) at 25 degrees C. The NMR signals narrowed upon cooling to -2 degrees C, enabling complete 1H NMR signal assignment via standard two-dimensional (2D) NMR methods. Distance restraints obtained from qualitative analysis of 2D nuclear Overhauser effect (NOESY) data were used to generate 30 distance geometry (DG) structures with penalties (penalty = sum of the squared differences between interatomic distances defined in the restraints file and in the DG structures) in the range 0.02-0.03 A2. All structures were qualitatively consistent with the experimental NOESY spectrum based on comparisons with 2D NOESY back-calculated spectra. Superposition of the backbone atoms (C, C alpha, N) for residues C(1)-C(14) gave pairwise RMSD values in the range 0.16-0.75 A. The folding of Zn(HIV1-F2) is very similar to that observed for Zn(HIV1-F1). Small differences observed between the two finger domains are localized to residues between His(9) and Cys(14), with residues M(11)-C(14) forming a 3(10) helical corner.(ABSTRACT TRUNCATED AT 250 WORDS)
采用二维核磁共振光谱和计算方法对一种18个残基的肽进行结构测定,该肽具有来自HIV-1核衣壳蛋白(NCP)的C末端逆转录病毒型(r.t.)锌指结构域的氨基酸序列[Zn(HIV1-F2)]。与第一个逆转录病毒型锌指肽Zn(HIV1-F1)的结果不同[萨默斯等人(1990年),《生物化学》29卷,329页],在25℃下Zn-(HIV1-F2)的1H NMR谱中观察到表明构象不稳定的宽信号。冷却至-2℃时,NMR信号变窄,从而能够通过标准二维(2D)NMR方法完成1H NMR信号归属。从二维核Overhauser效应(NOESY)数据的定性分析中获得的距离约束用于生成30个距离几何(DG)结构,其惩罚值(惩罚=约束文件中定义的原子间距离与DG结构中定义的原子间距离的平方差之和)在0.02-0.03 Å2范围内。基于与二维NOESY反算谱的比较,所有结构在质量上均与实验NOESY谱一致。残基C(1)-C(14)的主链原子(C、Cα、N)叠加后的成对均方根偏差(RMSD)值在0.16-0.75 Å范围内。Zn(HIV1-F2)的折叠与Zn(HIV1-F1)观察到的折叠非常相似。在两个锌指结构域之间观察到的小差异局限于His(9)和Cys(14)之间的残基,残基M(11)-C(14)形成一个3(10)螺旋转角。(摘要截断于250字)