Quantitative analysis of G-actin transport in motile cells.
about
Modeling cellular processes in 3DA comparison of computational models for eukaryotic cell shape and motilityThe role of actin turnover in retrograde actin network flow in neuronal growth conesRobust organizational principles of protrusive biopolymer networks in migrating living cellsStoichiometry of Nck-dependent actin polymerization in living cellsReaction-diffusion systems in intracellular molecular transport and controlA conservative algorithm for parabolic problems in domains with moving boundariesCost-benefit analysis of the mechanisms that enable migrating cells to sustain motility upon changes in matrix environments.F- and G-actin concentrations in lamellipodia of moving cellsModeling of protrusion phenotypes driven by the actin-membrane interaction.Design of active transport must be highly intricate: a possible role of myosin and Ena/VASP for G-actin transport in filopodiaThe Eps8/IRSp53/VASP network differentially controls actin capping and bundling in filopodia formationRedundant mechanisms for stable cell locomotion revealed by minimal modelsFeedback mechanisms in a mechanical model of cell polarizationTheory of active transport in filopodia and stereocilia.Use of virtual cell in studies of cellular dynamics.Distributed actin turnover in the lamellipodium and FRAP kinetics.An open model of actin dendritic nucleation.Modeling the synergy of cofilin and Arp2/3 in lamellipodial protrusive activityModels at the single cell level.Protein fluxes along the filopodium as a framework for understanding the growth-retraction dynamics: the interplay between diffusion and active transport.Multiscale modeling of cell shape from the actin cytoskeleton.Model of turnover kinetics in the lamellipodium: implications of slow- and fast- diffusing capping protein and Arp2/3 complex.Measurements of spatiotemporal changes in G-actin concentration reveal its effect on stimulus-induced actin assembly and lamellipodium extension.Computational modeling of single-cell migration: the leading role of extracellular matrix fibers.A mathematical model of the coupled mechanisms of cell adhesion, contraction and spreading.Can filament treadmilling alone account for the F-actin turnover in lamellipodia?Computational modeling of single-cell mechanics and cytoskeletal mechanobiology.Reconsidering an active role for G-actin in cytoskeletal regulation.Leading-edge-gel coupling in lamellipodium motion.
P2860
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P2860
Quantitative analysis of G-actin transport in motile cells.
description
2008 nî lūn-bûn
@nan
2008年の論文
@ja
2008年論文
@yue
2008年論文
@zh-hant
2008年論文
@zh-hk
2008年論文
@zh-mo
2008年論文
@zh-tw
2008年论文
@wuu
2008年论文
@zh
2008年论文
@zh-cn
name
Quantitative analysis of G-actin transport in motile cells.
@ast
Quantitative analysis of G-actin transport in motile cells.
@en
type
label
Quantitative analysis of G-actin transport in motile cells.
@ast
Quantitative analysis of G-actin transport in motile cells.
@en
prefLabel
Quantitative analysis of G-actin transport in motile cells.
@ast
Quantitative analysis of G-actin transport in motile cells.
@en
P2860
P1433
P1476
Quantitative analysis of G-actin transport in motile cells.
@en
P2093
Boris M Slepchenko
Igor L Novak
P2860
P304
P356
10.1529/BIOPHYSJ.108.130096
P407
P577
2008-05-23T00:00:00Z