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1.
Elife ; 72018 09 11.
Artigo em Inglês | MEDLINE | ID: mdl-30201094

RESUMO

The functions performed by the concentric shells of multilayered dsRNA viruses require specific protein interactions that can be directly explored through their mechanical properties. We studied the stiffness, breaking force, critical strain and mechanical fatigue of individual Triple, Double and Single layered rotavirus (RV) particles. Our results, in combination with Finite Element simulations, demonstrate that the mechanics of the external layer provides the resistance needed to counteract the stringent conditions of extracellular media. Our experiments, in combination with electrostatic analyses, reveal a strong interaction between the two outer layers and how it is suppressed by the removal of calcium ions, a key step for transcription initiation. The intermediate layer presents weak hydrophobic interactions with the inner layer that allow the assembly and favor the conformational dynamics needed for transcription. Our work shows how the biophysical properties of the three shells are finely tuned to produce an infective RV virion.


Assuntos
Fenômenos Biofísicos , Rotavirus/química , Proteínas Virais/química , Vírion/química , Análise de Elementos Finitos , Microscopia de Força Atômica , Modelos Biológicos , Nanopartículas/química , Rotavirus/ultraestrutura , Vírion/ultraestrutura
2.
Nat Commun ; 7: 13014, 2016 10 04.
Artigo em Inglês | MEDLINE | ID: mdl-27698405

RESUMO

The assembly and regulation of viral capsid proteins into highly ordered macromolecular complexes is essential for viral replication. Here, we utilize crystal structures of the capsid protein from the smallest and simplest known viruses capable of autonomously replicating in animal cells, circoviruses, to establish structural and mechanistic insights into capsid morphogenesis and regulation. The beak and feather disease virus, like many circoviruses, encode only two genes: a capsid protein and a replication initiation protein. The capsid protein forms distinct macromolecular assemblies during replication and here we elucidate these structures at high resolution, showing that these complexes reverse the exposure of the N-terminal arginine rich domain responsible for DNA binding and nuclear localization. We show that assembly of these complexes is regulated by single-stranded DNA (ssDNA), and provide a structural basis of capsid assembly around single-stranded DNA, highlighting novel binding interfaces distinct from the highly positively charged N-terminal ARM domain.


Assuntos
Proteínas do Capsídeo/metabolismo , Capsídeo/metabolismo , Vírion/metabolismo , Animais , Arginina/química , Cristalografia por Raios X , Replicação do DNA , DNA de Cadeia Simples/metabolismo , DNA Viral/metabolismo , Substâncias Macromoleculares , Conformação Proteica , Domínios Proteicos , Montagem de Vírus , Replicação Viral
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