Protein friction exerted by motor enzymes through a weak-binding interaction.
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Transduction channels' gating can control friction on vibrating hair-cell bundles in the earThe motility of mollicutes.Forces generated during actin-based propulsion: a direct measurement by micromanipulationThe molecular basis of frictional loads in the in vitro motility assay with applications to the study of the loaded mechanochemistry of molecular motors.Prometaphase spindle maintenance by an antagonistic motor-dependent force balance made robust by a disassembling lamin-B envelope.Microtubule organization by the antagonistic mitotic motors kinesin-5 and kinesin-14Analysis of video-based microscopic particle trajectories using Kalman filtering.Fluctuation in the microtubule sliding movement driven by kinesin in vitro.Thermal drift is enough to drive a single microtubule along its axis even in the absence of motor proteins.Forces on chromosomal DNA during anaphase.A single-track fluctuation analysis in the sliding movement by protein motors in vitro.Insights into the micromechanical properties of the metaphase spindleDetermining Physical Properties of the Cell Cortex.Axial rotation of sliding actin filaments revealed by single-fluorophore imaging.Porters versus rowers: a unified stochastic model of motor proteins.A Combination of Actin Treadmilling and Cross-Linking Drives Contraction of Random Actomyosin Arrays.Imaging of thermal activation of actomyosin motors.Directional instability of microtubule transport in the presence of kinesin and dynein, two opposite polarity motor proteinsFluctuation of actin sliding over myosin thick filaments in vitro.Microtubule motors in eukaryotic spindle assembly and maintenanceActomyosin contraction, aggregation and traveling waves in a treadmilling actin array.The role of tropomyosin domains in cooperative activation of the actin-myosin interaction.Protein-protein ratchets: stochastic simulation and application to processive enzymes.Mechanical components of motor enzyme function.Structural dynamics of an actin spring.Strain in shock-loaded skeletal muscle and the time scale of muscular wobbling mass dynamics.Motor-induced sliding of microtubule and actin bundles.Force Generation by Molecular-Motor-Powered Microtubule Bundles; Implications for Neuronal Polarization and Growth.Protein friction limits diffusive and directed movements of kinesin motors on microtubules.Biochemistry. Friction in motor proteins.The excluded volume effect induced by poly(ethylene glycol) modulates the motility of actin filaments interacting with myosin.Exact solution of a linear molecular motor model driven by two-step fluctuations and subject to protein friction.Asymmetry between pushing and pulling for crawling cells.Theoretical model for motility and processivity of two-headed molecular motors.Filament turnover tunes both force generation and dissipation to control long-range flows in a model actomyosin cortex.Bidirectional motion of filaments: the role of motor proteins and passive cross linkers.Molecular wear of microtubules propelled by surface-adhered kinesins.Radial stiffness characteristics of the overlap regions of sarcomeres in isolated skeletal myofibrils in pre-force generating state.Locally and globally coupled oscillators in muscle.Growth, collapse, and stalling in a mechanical model for neurite motility.
P2860
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P2860
Protein friction exerted by motor enzymes through a weak-binding interaction.
description
1991 nî lūn-bûn
@nan
1991年の論文
@ja
1991年学术文章
@wuu
1991年学术文章
@zh
1991年学术文章
@zh-cn
1991年学术文章
@zh-hans
1991年学术文章
@zh-my
1991年学术文章
@zh-sg
1991年學術文章
@yue
1991年學術文章
@zh-hant
name
Protein friction exerted by motor enzymes through a weak-binding interaction.
@en
Protein friction exerted by motor enzymes through a weak-binding interaction.
@nl
type
label
Protein friction exerted by motor enzymes through a weak-binding interaction.
@en
Protein friction exerted by motor enzymes through a weak-binding interaction.
@nl
prefLabel
Protein friction exerted by motor enzymes through a weak-binding interaction.
@en
Protein friction exerted by motor enzymes through a weak-binding interaction.
@nl
P1476
Protein friction exerted by motor enzymes through a weak-binding interaction.
@en
P2093
P304
P356
10.1016/S0022-5193(05)80331-5
P407
P577
1991-05-01T00:00:00Z