Holmes K C
J Supramol Struct. 1979;12(3):305-20. doi: 10.1002/jss.400120304.
A review of the structural studies of tobacco mosaic virus (TMV) is given. TMV is essentially a flat helical microcrystal with 16 1/3 subunits per turn. A single strand of RNA runs along the helix and is deeply embedded in the protein. The virus particles form oriented gels from which high-resolution X-ray fiber diffraction data can be obtained. This may be interpreted by the use of six heavy-chain derivatives to give an electron density map at 0.4 nm resolution from which the RNA configuration and the form of the inner part of the protein subunit may be determined. In addition, the protein subunits form a stable 17-fold two-layered disk which is involved in virus assembly and which crystallizes. By the use of noncrystallographic symmetry and a single heavy-atom derivative, it has been possible to solve the structure of the double disk to 0.28 nm resolution. In this structure one sees that an important structural role is played by four alpha-helices, one of which (the LR helix) appears to form the main binding site for the RNA. The main components of the binding site appear to be hydrophobic interactions with the bases, hydrogen bonds between aspartate groups and the sugars, and arginine salt bridges to the phosphate groups. The binding site is between two turns of the virus helix or between the turns of the double disk. In the disk, the region proximal to the RNA binding site is in a random coil until the RNA binds, whereupon the 24 residues involved build a well-defined structure, thereby encapsulating the RNA.
本文对烟草花叶病毒(TMV)的结构研究进行了综述。TMV本质上是一种扁平的螺旋微晶,每圈有16又1/3个亚基。一条单链RNA沿着螺旋延伸并深深嵌入蛋白质中。病毒粒子形成定向凝胶,从中可获得高分辨率的X射线纤维衍射数据。这可以通过使用六种重链衍生物来解释,从而得到分辨率为0.4纳米的电子密度图,由此可以确定RNA的构型和蛋白质亚基内部的结构形式。此外,蛋白质亚基形成一个稳定的17倍双层盘,它参与病毒组装并能结晶。通过使用非晶体学对称性和单一重原子衍生物,已能够将双盘结构解析到0.28纳米的分辨率。在这个结构中可以看到,四个α螺旋发挥着重要的结构作用,其中一个(LR螺旋)似乎形成了RNA的主要结合位点。结合位点的主要成分似乎是与碱基的疏水相互作用、天冬氨酸基团与糖之间的氢键以及与磷酸基团的精氨酸盐桥。结合位点位于病毒螺旋的两圈之间或双盘的圈之间。在双盘中,靠近RNA结合位点的区域在RNA结合之前处于无规卷曲状态,一旦RNA结合,涉及的24个残基就会形成一个明确的结构,从而包裹住RNA。