Physical regulation of the self-assembly of tobacco mosaic virus coat protein
about
Mechanisms of virus assemblyField-induced assembly of colloidal ellipsoids into well-defined microtubules.Self-assembled bionanoparticles based on the Sulfolobus tengchongensis spindle-shaped virus 1 (STSV1) coat protein as a prospective bioscaffold for nanotechnological applications.The role of solution conditions in the bacteriophage PP7 capsid charge regulation.Crystal structure of a four-layer aggregate of engineered TMV CP implies the importance of terminal residues for oligomer assemblyModeling Viral Capsid Assembly.The development and application of new crystallization method for tobacco mosaic virus coat protein.New Strategies and Methods to Study Interactions between Tobacco Mosaic Virus Coat Protein and Its Inhibitors.Study on nanocomposite construction based on the multi-functional biotemplate self-assembled by the recombinant TMGMV coat protein for potential biomedical applications.Dynamic DNA-controlled "stop-and-go" assembly of well-defined protein domains on RNA-scaffolded TMV-like nanotubes.Equilibrium self-assembly of small RNA viruses.Tailoring the Self-Assembly Behaviors of Recombinant Tobacco Mosaic Virus by Rationally Introducing Covalent Bonding at the Protein-Protein Interface.A kinetic Zipper model and the assembly of tobacco mosaic virus.A molecular thermodynamic model for the stability of hepatitis B capsids.How simple can a model of an empty viral capsid be? Charge distributions in viral capsids.Bottom-up-assembled nanostar colloids of gold cores and tubes derived from tobacco mosaic virus.Nonspecific interactions in spontaneous assembly of empty versus functional single-stranded RNA viruses.Ningnanmycin inhibits tobacco mosaic virus virulence by binding directly to its coat protein discs.Simulation studies of a phenomenological model for elongated virus capsid formation.Assembly of viruses and the pseudo-law of mass action.Assembly of viral capsids, buckling, and the Asaro-Grinfeld-Tiller instability.Icosahedral capsid formation by capsomers and short polyions.Evolutionary dynamics in a simple model of self-assembly.The different faces of mass action in virus assembly.
P2860
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P2860
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
description
2006 nî lūn-bûn
@nan
2006年の論文
@ja
2006年論文
@yue
2006年論文
@zh-hant
2006年論文
@zh-hk
2006年論文
@zh-mo
2006年論文
@zh-tw
2006年论文
@wuu
2006年论文
@zh
2006年论文
@zh-cn
name
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@en
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@nl
type
label
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@en
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@nl
prefLabel
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@en
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@nl
P2860
P1433
P1476
Physical regulation of the self-assembly of tobacco mosaic virus coat protein
@en
P2093
Paul van der Schoot
Willem K Kegel
P2860
P304
P356
10.1529/BIOPHYSJ.105.072603
P407
P577
2006-05-26T00:00:00Z