Role of φ29 connector channel loops in late-stage DNA packaging.
about
Structure of the RNA claw of the DNA packaging motor of bacteriophage 29Discovery of a new motion mechanism of biomotors similar to the earth revolving around the sun without rotation.Mechanisms of DNA Packaging by Large Double-Stranded DNA VirusesMechanism of one-way traffic of hexameric phi29 DNA packaging motor with four electropositive relaying layers facilitating antiparallel revolution.Portal protein functions akin to a DNA-sensor that couples genome-packaging to icosahedral capsid maturation.Common mechanisms of DNA translocation motors in bacteria and viruses using one-way revolution mechanism without rotationRole of channel lysines and the "push through a one-way valve" mechanism of the viral DNA packaging motor.Structural rearrangements in the phage head-to-tail interface during assembly and infection.Cryo-EM structure of the bacteriophage T4 portal protein assembly at near-atomic resolution.DNA Scrunching in the Packaging of Viral Genomes.An RNA Domain Imparts Specificity and Selectivity to a Viral DNA Packaging Motor.A three-helix junction is the interface between two functional domains of prohead RNA in 29 DNA packaging.Packaging Models versus Modeling Packaging.Biological Nanomotors with a Revolution, Linear, or Rotation Motion MechanismStructural ensemble and dynamics of toroidal-like DNA shapes in bacteriophage ϕ29 exit cavity.Structure-function analysis of the DNA translocating portal of the bacteriophage T4 packaging machineInsights into the structure and assembly of the bacteriophage 29 double-stranded DNA packaging motorElastic properties and heterogeneous stiffness of the phi29 motor connector channel.Dualities in the analysis of phage DNA packaging motors.Three-step channel conformational changes common to DNA packaging motors of bacterial viruses T3, T4, SPP1, and Phi29.Phi29 Connector-DNA Interactions Govern DNA Crunching and Rotation, Supporting the Check-Valve Model.Forces from the Portal Govern the Late-Stage DNA Transport in a Viral DNA Packaging NanomotorFinding of widespread viral and bacterial revolution dsDNA translocation motors distinct from rotation motors by channel chirality and sizeChannel size conversion of Phi29 DNA-packaging nanomotor for discrimination of single- and double-stranded nucleic acidsMolecular architecture of tailed double-stranded DNA phages.Porphyrin-Assisted Docking of a Thermophage Portal Protein into Lipid Bilayers: Nanopore Engineering and Characterization.
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P2860
Role of φ29 connector channel loops in late-stage DNA packaging.
description
2011 nî lūn-bûn
@nan
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
2011年论文
@zh
2011年论文
@zh-cn
name
Role of φ29 connector channel loops in late-stage DNA packaging.
@en
Role of φ29 connector channel loops in late-stage DNA packaging.
@nl
type
label
Role of φ29 connector channel loops in late-stage DNA packaging.
@en
Role of φ29 connector channel loops in late-stage DNA packaging.
@nl
prefLabel
Role of φ29 connector channel loops in late-stage DNA packaging.
@en
Role of φ29 connector channel loops in late-stage DNA packaging.
@nl
P2093
P2860
P1476
Role of φ29 connector channel loops in late-stage DNA packaging
@en
P2093
Rockney Atz
Shelley Grimes
P2860
P356
10.1016/J.JMB.2011.04.070
P407
P577
2011-05-05T00:00:00Z