EMD-4740
Atomic structure of potato virus X, the prototype of the Alphaflexiviridae family
EMD-4740
Helical reconstruction2.2 Å
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Map released: 18/03/2020
Last modified: 22/05/2024
Sample Organism:
Potato virus X
Sample: Potato virus X
Fitted models: 6r7g (Avg. Q-score: 0.712)
Raw data: EMPIAR-10705
Deposition Authors: Grinzato A
,
Kandiah E
Sample: Potato virus X
Fitted models: 6r7g (Avg. Q-score: 0.712)
Raw data: EMPIAR-10705
Deposition Authors: Grinzato A
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Atomic structure of potato virus X, the prototype of the Alphaflexiviridae family.
Grinzato A
,
Kandiah E
,
Lico C
,
Betti C
,
Baschieri S
,
Zanotti G
(2020) Nat Chem Biol , 16 , 564 - 569
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(2020) Nat Chem Biol , 16 , 564 - 569
Abstract:
Potato virus X (PVX) is a positive-sense single-stranded RNA (ssRNA) filamentous plant virus belonging to the Alphaflexiviridae family, considered in recent years as a tool for nanotechnology applications. We present the cryo-electron microscopy structure of the PVX particle at a resolution of 2.2 Å. The well-defined density of the coat proteins and of the genomic RNA allowed a detailed analysis of protein-RNA interactions, including those mediated by solvent molecules. The particle is formed by repeated segments made of 8.8 coat proteins, forming a left-handed helical structure. The RNA runs in an internal crevice along the virion, packaged in 5-nucleotide repeats in which the first four bases are stacked in the classical way, while the fifth is rotated and nearly perpendicular. The resolution of the structure described here suggests a mechanism for the virion assembly and potentially provides a platform for the rational design of antiviral compounds and for the use of PVX in nanotechnology.
Potato virus X (PVX) is a positive-sense single-stranded RNA (ssRNA) filamentous plant virus belonging to the Alphaflexiviridae family, considered in recent years as a tool for nanotechnology applications. We present the cryo-electron microscopy structure of the PVX particle at a resolution of 2.2 Å. The well-defined density of the coat proteins and of the genomic RNA allowed a detailed analysis of protein-RNA interactions, including those mediated by solvent molecules. The particle is formed by repeated segments made of 8.8 coat proteins, forming a left-handed helical structure. The RNA runs in an internal crevice along the virion, packaged in 5-nucleotide repeats in which the first four bases are stacked in the classical way, while the fifth is rotated and nearly perpendicular. The resolution of the structure described here suggests a mechanism for the virion assembly and potentially provides a platform for the rational design of antiviral compounds and for the use of PVX in nanotechnology.