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TitleAcquisition of functions on the outer capsid surface during evolution of double-stranded RNA fungal viruses.
Journal, issue, pagesPLoS Pathog, Vol. 13, Issue 12, Page e1006755, Year 2017
Publish dateDec 8, 2017
AuthorsCarlos P Mata / Daniel Luque / Josué Gómez-Blanco / Javier M Rodríguez / José M González / Nobuhiro Suzuki / Said A Ghabrial / José L Carrascosa / Benes L Trus / José R Castón /
PubMed AbstractUnlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3. ...Unlike their counterparts in bacterial and higher eukaryotic hosts, most fungal viruses are transmitted intracellularly and lack an extracellular phase. Here we determined the cryo-EM structure at 3.7 Å resolution of Rosellinia necatrix quadrivirus 1 (RnQV1), a fungal double-stranded (ds)RNA virus. RnQV1, the type species of the family Quadriviridae, has a multipartite genome consisting of four monocistronic segments. Whereas most dsRNA virus capsids are based on dimers of a single protein, the ~450-Å-diameter, T = 1 RnQV1 capsid is built of P2 and P4 protein heterodimers, each with more than 1000 residues. Despite a lack of sequence similarity between the two proteins, they have a similar α-helical domain, the structural signature shared with the lineage of the dsRNA bluetongue virus-like viruses. Domain insertions in P2 and P4 preferential sites provide additional functions at the capsid outer surface, probably related to enzyme activity. The P2 insertion has a fold similar to that of gelsolin and profilin, two actin-binding proteins with a function in cytoskeleton metabolism, whereas the P4 insertion suggests protease activity involved in cleavage of the P2 383-residue C-terminal region, absent in the mature viral particle. Our results indicate that the intimate virus-fungus partnership has altered the capsid genome-protective and/or receptor-binding functions. Fungal virus evolution has tended to allocate enzyme activities to the virus capsid outer surface.
External linksPLoS Pathog / PubMed:29220409 / PubMed Central
MethodsEM (single particle)
Resolution3.7 Å
Structure data

EMDB-3619: RnQV1-W1118 empty capsid
PDB-5nd1: Viral evolution results in multiple, surface-allocated enzymatic activities in a fungal double-stranded RNA virus
Method: EM (single particle) / Resolution: 3.7 Å

Source
  • rosellinia necatrix quadrivirus 1
KeywordsVIRUS / RnQV1 / dsRNA virus / fungal virus

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