Cargando…

Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein

We have examined the roles of RNA–coat protein (CP) interactions in the assembly of satellite tobacco necrosis virus (STNV). The viral genomic RNA encodes only the CP, which comprises a β-barrel domain connected to a positively charged N-terminal extension. In the previous crystal structures of this...

Descripción completa

Detalles Bibliográficos
Autores principales: Ford, Robert J., Barker, Amy M., Bakker, Saskia E., Coutts, Robert H., Ranson, Neil A., Phillips, Simon E.V., Pearson, Arwen R., Stockley, Peter G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3593212/
https://www.ncbi.nlm.nih.gov/pubmed/23318955
http://dx.doi.org/10.1016/j.jmb.2013.01.004
_version_ 1782262236335570944
author Ford, Robert J.
Barker, Amy M.
Bakker, Saskia E.
Coutts, Robert H.
Ranson, Neil A.
Phillips, Simon E.V.
Pearson, Arwen R.
Stockley, Peter G.
author_facet Ford, Robert J.
Barker, Amy M.
Bakker, Saskia E.
Coutts, Robert H.
Ranson, Neil A.
Phillips, Simon E.V.
Pearson, Arwen R.
Stockley, Peter G.
author_sort Ford, Robert J.
collection PubMed
description We have examined the roles of RNA–coat protein (CP) interactions in the assembly of satellite tobacco necrosis virus (STNV). The viral genomic RNA encodes only the CP, which comprises a β-barrel domain connected to a positively charged N-terminal extension. In the previous crystal structures of this system, the first 11 residues of the protein are disordered. Using variants of an RNA aptamer sequence isolated against the CP, B3, we have studied the sequence specificity of RNA-induced assembly. B3 consists of a stem–loop presenting the tetra-loop sequence ACAA. There is a clear preference for RNAs encompassing this loop sequence, as measured by the yield of T = 1 capsids, which is indifferent to sequences within the stem. The B3-containing virus-like particle has been crystallised and its structure was determined to 2.3 Å. A lower-resolution map encompassing density for the RNA has also been calculated. The presence of B3 results in increased ordering of the N-terminal helices located at the particle 3-fold axes, which extend by roughly one and a half turns to encompass residues 8–11, including R8 and K9. Under assembly conditions, STNV CP in the absence of RNA is monomeric and does not self-assemble. These facts suggest that a plausible model for assembly initiation is the specific RNA-induced stabilisation of a trimeric capsomere. The basic nature of the helical extension suggests that electrostatic repulsion between CPs prevents assembly in the absence of RNA and that this barrier is overcome by correct placement of appropriately orientated helical RNA stems. Such a mechanism would be consistent with the data shown here for assembly with longer RNA fragments, including an STNV genome. The results are discussed in light of a first stage of assembly involving compaction of the genomic RNA driven by multiple RNA packaging signal–CP interactions.
format Online
Article
Text
id pubmed-3593212
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-35932122013-03-25 Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein Ford, Robert J. Barker, Amy M. Bakker, Saskia E. Coutts, Robert H. Ranson, Neil A. Phillips, Simon E.V. Pearson, Arwen R. Stockley, Peter G. J Mol Biol Article We have examined the roles of RNA–coat protein (CP) interactions in the assembly of satellite tobacco necrosis virus (STNV). The viral genomic RNA encodes only the CP, which comprises a β-barrel domain connected to a positively charged N-terminal extension. In the previous crystal structures of this system, the first 11 residues of the protein are disordered. Using variants of an RNA aptamer sequence isolated against the CP, B3, we have studied the sequence specificity of RNA-induced assembly. B3 consists of a stem–loop presenting the tetra-loop sequence ACAA. There is a clear preference for RNAs encompassing this loop sequence, as measured by the yield of T = 1 capsids, which is indifferent to sequences within the stem. The B3-containing virus-like particle has been crystallised and its structure was determined to 2.3 Å. A lower-resolution map encompassing density for the RNA has also been calculated. The presence of B3 results in increased ordering of the N-terminal helices located at the particle 3-fold axes, which extend by roughly one and a half turns to encompass residues 8–11, including R8 and K9. Under assembly conditions, STNV CP in the absence of RNA is monomeric and does not self-assemble. These facts suggest that a plausible model for assembly initiation is the specific RNA-induced stabilisation of a trimeric capsomere. The basic nature of the helical extension suggests that electrostatic repulsion between CPs prevents assembly in the absence of RNA and that this barrier is overcome by correct placement of appropriately orientated helical RNA stems. Such a mechanism would be consistent with the data shown here for assembly with longer RNA fragments, including an STNV genome. The results are discussed in light of a first stage of assembly involving compaction of the genomic RNA driven by multiple RNA packaging signal–CP interactions. Elsevier 2013-03-25 /pmc/articles/PMC3593212/ /pubmed/23318955 http://dx.doi.org/10.1016/j.jmb.2013.01.004 Text en © 2013 Elsevier Ltd. https://creativecommons.org/licenses/by/3.0/ Open Access under CC BY 3.0 (https://creativecommons.org/licenses/by/3.0/) license
spellingShingle Article
Ford, Robert J.
Barker, Amy M.
Bakker, Saskia E.
Coutts, Robert H.
Ranson, Neil A.
Phillips, Simon E.V.
Pearson, Arwen R.
Stockley, Peter G.
Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title_full Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title_fullStr Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title_full_unstemmed Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title_short Sequence-Specific, RNA–Protein Interactions Overcome Electrostatic Barriers Preventing Assembly of Satellite Tobacco Necrosis Virus Coat Protein
title_sort sequence-specific, rna–protein interactions overcome electrostatic barriers preventing assembly of satellite tobacco necrosis virus coat protein
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3593212/
https://www.ncbi.nlm.nih.gov/pubmed/23318955
http://dx.doi.org/10.1016/j.jmb.2013.01.004
work_keys_str_mv AT fordrobertj sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT barkeramym sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT bakkersaskiae sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT couttsroberth sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT ransonneila sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT phillipssimonev sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT pearsonarwenr sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein
AT stockleypeterg sequencespecificrnaproteininteractionsovercomeelectrostaticbarrierspreventingassemblyofsatellitetobacconecrosisviruscoatprotein