Pappachan Anju, Subashchandrabose Chinnathambi, Satheshkumar P S, Savithri H S, Murthy M R N
Molecular Biophysics Unit, Indian Institute of Science, Bangalore-560 012, India.
Virology. 2008 May 25;375(1):190-6. doi: 10.1016/j.virol.2008.01.023. Epub 2008 Mar 4.
A unique feature of several T=3 icosahedral viruses is the presence of a structure called the beta-annulus formed by extensive hydrogen bonding between protein subunits related by icosahedral three-fold axis of symmetry. This unique structure has been suggested as a molecular switch that determines the T=3 capsid assembly. In order to examine the importance of the beta-annulus, a deletion mutant of Sesbania mosaic virus coat protein in which residues 48-59 involved in the formation of the beta-annulus were deleted retaining the rest of the residues in the amino terminal segment (rCP (Delta48-59)) was constructed. When expressed in Escherichia coli, the mutant protein assembled into virus like particles of sizes close to that of the wild type virus particles. The purified capsids were crystallized and their three dimensional structure was determined at 3.6 A resolution by X-ray crystallography. The mutant capsid structure closely resembled that of the native virus particles. However, surprisingly, the structure revealed that the assembly of the particles has proceeded without the formation of the beta-annulus. Therefore, the beta-annulus is not essential for T=3 capsid assembly as speculated earlier and may be formed as a consequence of the particle assembly. This is the first structural demonstration that the virus particle morphology with and without the beta-annulus could be closely similar.
几种T=3二十面体病毒的一个独特特征是存在一种称为β环的结构,它由通过二十面体三重对称轴相关的蛋白质亚基之间广泛的氢键形成。这种独特的结构被认为是决定T=3衣壳组装的分子开关。为了研究β环的重要性,构建了田菁花叶病毒外壳蛋白的缺失突变体,其中参与β环形成的48-59位残基被删除,而氨基末端片段的其余残基得以保留(rCP(Δ48-59))。当在大肠杆菌中表达时,突变蛋白组装成大小接近野生型病毒颗粒的病毒样颗粒。纯化的衣壳被结晶,并通过X射线晶体学在3.6埃分辨率下确定其三维结构。突变衣壳结构与天然病毒颗粒的结构非常相似。然而,令人惊讶地是,该结构显示颗粒的组装在没有形成β环的情况下就已经进行。因此,β环并非如先前推测的那样对于T=3衣壳组装至关重要,可能是颗粒组装的结果。这是首次通过结构证明有或没有β环的病毒颗粒形态可能非常相似。