Satheshkumar P S, Lokesh G L, Sangita V, Saravanan V, Vijay C S, Murthy M R N, Savithri H S
Department of Biochemistry, Indian Institute of Science, Bangalore 560 012, India.
J Mol Biol. 2004 Sep 17;342(3):1001-14. doi: 10.1016/j.jmb.2004.07.022.
Sesbania mosaic virus (SeMV) capsids are stabilized by RNA-protein, protein-protein and calcium-mediated protein-protein interactions. The removal of calcium has been proposed to be a prerequisite for the disassembly of the virus. The crystal structure of native T=3 SeMV capsid revealed that residues D146 and D149 from one subunit and Y205, N267 and N268 of the neighboring subunit form the calcium-binding site (CBS). The CBS environment is found to be identical even in the recombinant CP-NDelta65 T=1 capsids. Here, we have addressed the role of calcium and the residues involved in calcium co-ordination in the assembly and stability of T=3 and T=1 capsids by mutational analysis. Deletion of N267 and N268 did not affect T=3 or T=1 assembly, although the capsids were devoid of calcium, suggesting that assembly does not require calcium ions. However, the stability of the capsids was reduced drastically. Site-directed mutagenesis revealed that either a single mutation (D149N) or a double mutation (D146N-D149N) of SeMV coat protein affected drastically both the assembly and stability of T=3 capsids. On the other hand, the D146N-D149N mutation in CP-NDelta65 did not affect the assembly of T=1 capsid, although their stability was reduced considerably. Since the major difference between the T=3 and T=1 capsids is the absence of the N-terminal arginine-rich motif (N-ARM) and the beta-annulus from the subunits forming the T=1 capsids, it is possible that D149 initiates the N-ARM-RNA interactions that lead to the formation of the beta-annulus, which is essential for T=3 capsid assembly.
田菁花叶病毒(SeMV)的衣壳通过RNA-蛋白质、蛋白质-蛋白质以及钙介导的蛋白质-蛋白质相互作用得以稳定。有人提出去除钙是病毒解体的一个先决条件。天然T=3 SeMV衣壳的晶体结构显示,一个亚基的D146和D149残基以及相邻亚基的Y205、N267和N268形成了钙结合位点(CBS)。即使在重组CP-NDelta65 T=1衣壳中,CBS环境也被发现是相同的。在这里,我们通过突变分析研究了钙以及参与钙配位的残基在T=3和T=1衣壳的组装和稳定性中的作用。删除N267和N268并不影响T=3或T=1的组装,尽管衣壳不含钙,这表明组装不需要钙离子。然而,衣壳的稳定性大幅降低。定点诱变显示,SeMV外壳蛋白的单个突变(D149N)或双突变(D146N-D149N)都严重影响了T=3衣壳的组装和稳定性。另一方面,CP-NDelta65中的D146N-D149N突变并不影响T=1衣壳的组装,尽管它们的稳定性大幅降低。由于T=3和T=1衣壳之间的主要差异在于形成T=1衣壳的亚基中不存在富含精氨酸的N端基序(N-ARM)和β环,因此有可能D149启动了导致β环形成的N-ARM-RNA相互作用,而β环对于T=3衣壳的组装至关重要。