Gao Y, Kaluarachchi K, Giedroc D P
Center for Macromolecular Design, Department of Biochemistry and Biophysics, Texas A&M University, College Station 77843-2128, USA.
Protein Sci. 1998 Nov;7(11):2265-80. doi: 10.1002/pro.5560071104.
Retroviral nucleocapsid proteins (NCPs) are CCHC-type zinc finger proteins that mediate virion RNA binding activities associated with retrovirus assembly and genomic RNA encapsidation. Mason-Pfizer monkey virus (MPMV), a type D retrovirus, encodes a 96-amino acid nucleocapsid protein, which contains two Cys-X2-Cys-X4-His-X4-Cys (CCHC) zinc fingers connected by an unusually long 15-amino acid linker. Homonuclear, two-dimensional sensitivity-enhanced 15N-1H, three-dimensional 15N-1H, and triple resonance NMR spectroscopy have been used to determine the solution structure and residue-specific backbone dynamics of the structured core domain of MPMV NCP containing residues 21-80. Structure calculations and spectral density mapping of N-H bond vector mobility reveal that MPMV NCP 21-80 is best described as two independently folded, rotationally uncorrelated globular domains connected by a seven-residue flexible linker consisting of residues 42-48. The N-terminal CCHC zinc finger domain (residues 24-37) appears to adopt a fold like that described previously for HIV-1 NCP; however, residues within this domain and the immediately adjacent linker region (residues 38-41) are characterized by extensive conformational averaging on the micros-ms time scale at 25 degrees C. In contrast to other NCPs, residues 49-77, which includes the C-terminal CCHC zinc-finger (residues 53-66), comprise a well-folded globular domain with the Val49-Pro-Gly-Leu52 sequence and C-terminal tail residues 67-77 characterized by amide proton exchange properties and 15N R1, R2, and (1H-15N) NOE values indistinguishable to residues in the core C-terminal finger. Twelve refined structural models of MPMV NCP residues 49-80 (pairwise backbone RMSD of 0.77 A) reveal that the side chains of the conserved Pro50 and Trp62 are in van der Waals contact with one another. Residues 70-73 in the C-terminal tail adopt a reverse turn-like structure. Ile77 is involved in extensive van der Waals contact with the core finger domain, while the side chains of Ser68 and Asn75 appear to form hydrogen bonds that stabilize the overall fold of this domain. These residues outside of the core finger structure are conserved in D-type and related retroviral NCPs, e.g., MMTV NCP, suggesting that the structure of MPMV NCP may be representative of this subclass of retroviral NCPs.
逆转录病毒核衣壳蛋白(NCPs)是CCHC型锌指蛋白,介导与逆转录病毒组装和基因组RNA包装相关的病毒粒子RNA结合活性。猴空泡病毒(MPMV)是一种D型逆转录病毒,编码一种96个氨基酸的核衣壳蛋白,它包含两个由异常长的15个氨基酸的连接子连接的Cys-X2-Cys-X4-His-X4-Cys(CCHC)锌指。同核二维灵敏度增强的15N-1H、三维15N-1H和三重共振核磁共振光谱已被用于确定包含21-80位残基的MPMV NCP结构化核心结构域的溶液结构和残基特异性主链动力学。N-H键矢量迁移率的结构计算和光谱密度映射表明,MPMV NCP 21-80最好描述为两个独立折叠、旋转不相关的球状结构域,由一个由42-48位残基组成的七残基柔性连接子连接。N端CCHC锌指结构域(24-37位残基)似乎采用了先前描述的HIV-1 NCP的折叠方式;然而,该结构域内以及紧邻的连接子区域(38-41位残基)的残基在25℃下的微秒-毫秒时间尺度上具有广泛的构象平均化特征。与其他NCPs不同,49-77位残基,包括C端CCHC锌指(53-66位残基),构成一个折叠良好的球状结构域,其Val49-Pro-Gly-Leu52序列和C端尾端残基67-77的酰胺质子交换特性以及15N R1、R2和(1H-15N)NOE值与核心C端指中的残基无法区分。MPMV NCP 49-80位残基的十二个精制结构模型(成对主链RMSD为0.77 Å)表明,保守的Pro50和Trp62的侧链彼此处于范德华接触。C端尾端的70-73位残基采用类似反向转角的结构。Ile77与核心指结构域有广泛的范德华接触,而Ser68和Asn75的侧链似乎形成氢键以稳定该结构域的整体折叠。核心指结构之外的这些残基在D型和相关逆转录病毒NCPs(如MMTV NCP)中是保守的,这表明MPMV NCP的结构可能代表了这一逆转录病毒NCP亚类。