Sesbania mosaic virus (SeMV) capsids are stabilized by protein–protein, protein–RNA and calcium-mediated protein-protein interactions. The N-terminal random domain of SeMV coat protein (CP) controls RNA encapsidation and size of the capsids and has two important motifs, the arginine-rich motif (ARM) and the β-annulus structure. Here, mutational analysis of the arginine residues present in the ARM to glutamic acid was carried out. Mutation of all the arginine residues in the ARM almost completely abolished RNA encapsidation, although the assembly of T=3 capsids was not affected. A minimum of three arginine residues was found to be essential for RNA encapsidation. The mutant capsids devoid of RNA were less stable to thermal denaturation ...
A unique feature of several T=3 icosahedral viruses is the presence of a structure called the β...
AbstractA unique feature of several T=3 icosahedral viruses is the presence of a structure called th...
Viruses have served as excellent model systems for studies on the assembly/disassembly of macromolec...
Sesbania mosaic virus (SeMV) capsids are stabilized by protein–protein, protein–RNA and calcium-medi...
Sesbania mosaic virus (SeMV) capsids are stabilized by protein-protein,protein-RNA and calcium-media...
AbstractThe recombinant coat protein (CP) of Sesbania mosaic virus (SeMV; genus Sobemovirus) was fou...
The recombinant coat protein (CP) of Sesbania mosaic virus (SeMV; genus Sobemovirus) was found to se...
When expressed in Escherichia coli, the recombinant coat protein (rCP) of Sesbania mosaic virus (SeM...
Sesbania mosaic virus (SeMV) capsids are stabilized by RNA–protein, protein–protein and calcium-medi...
Sesbania mosaic virus (SeMV) capsids are stabilized by RNA–protein, protein–protein and calcium-medi...
AbstractProtein–protein interactions play a crucial role in virus assembly and stability. With the v...
Sesbania mosaic virus particles consist of 180 coat protein subunits of 29 kDa organized on a T=3 ic...
Protein–protein interactions play a crucial role in virus assembly and stability. With the view of d...
Deletion of the N-terminal 31 amino acids from the coat protein (CP) of Sesbania mosaic virus (SeMV)...
Sesbania mosaic virus particles consist of 180 coat protein subunits of 29 kDa organized on a T=3 ic...
A unique feature of several T=3 icosahedral viruses is the presence of a structure called the β...
AbstractA unique feature of several T=3 icosahedral viruses is the presence of a structure called th...
Viruses have served as excellent model systems for studies on the assembly/disassembly of macromolec...
Sesbania mosaic virus (SeMV) capsids are stabilized by protein–protein, protein–RNA and calcium-medi...
Sesbania mosaic virus (SeMV) capsids are stabilized by protein-protein,protein-RNA and calcium-media...
AbstractThe recombinant coat protein (CP) of Sesbania mosaic virus (SeMV; genus Sobemovirus) was fou...
The recombinant coat protein (CP) of Sesbania mosaic virus (SeMV; genus Sobemovirus) was found to se...
When expressed in Escherichia coli, the recombinant coat protein (rCP) of Sesbania mosaic virus (SeM...
Sesbania mosaic virus (SeMV) capsids are stabilized by RNA–protein, protein–protein and calcium-medi...
Sesbania mosaic virus (SeMV) capsids are stabilized by RNA–protein, protein–protein and calcium-medi...
AbstractProtein–protein interactions play a crucial role in virus assembly and stability. With the v...
Sesbania mosaic virus particles consist of 180 coat protein subunits of 29 kDa organized on a T=3 ic...
Protein–protein interactions play a crucial role in virus assembly and stability. With the view of d...
Deletion of the N-terminal 31 amino acids from the coat protein (CP) of Sesbania mosaic virus (SeMV)...
Sesbania mosaic virus particles consist of 180 coat protein subunits of 29 kDa organized on a T=3 ic...
A unique feature of several T=3 icosahedral viruses is the presence of a structure called the β...
AbstractA unique feature of several T=3 icosahedral viruses is the presence of a structure called th...
Viruses have served as excellent model systems for studies on the assembly/disassembly of macromolec...