about
Mechanism of the formation of contractile ring in dividing cultured animal cells. I. Recruitment of preexisting actin filaments into the cleavage furrowLocalization of sarcomeric proteins during myofibril assembly in cultured mouse primary skeletal myotubesMyosin II motors and F-actin dynamics drive the coordinated movement of the centrosome and soma during CNS glial-guided neuronal migration.In vitro and in vivo characterization of four fibroblast tropomyosins produced in bacteria: TM-2, TM-3, TM-5a, and TM-5b are co-localized in interphase fibroblastsDisruption of microfilament organization in living nonmuscle cells by microinjection of plasma vitamin D-binding protein or DNase I.Listeria monocytogenes moves rapidly through the host-cell cytoplasm by inducing directional actin assemblyAssembly of cytoskeletal proteins into cleavage furrows of tissue culture cells.Actin filaments mediate Dictyostelium myosin assembly in vitro.Titin visualization in real time reveals an unexpected level of mobility within and between sarcomeresEndothelial cell adhesion in real time. Measurements in vitro by tandem scanning confocal image analysisPosttranslational incorporation of contractile proteins into myofibrils in a cell-free system.Studies on cardiac myofibrillogenesis with antibodies to titin, actin, tropomyosin, and myosinDistribution of fast myosin heavy chain isoforms in thick filaments of developing chicken pectoral muscle.Polygons and adhesion plaques and the disassembly and assembly of myofibrils in cardiac myocytes.Formation and movement of myosin-containing structures in living fibroblasts.Differential distribution of myosin isoforms among the myofibrils of individual developing muscle fibers.Mechanisms of thin filament assembly in embryonic chick cardiac myocytes: tropomodulin requires tropomyosin for assembly.A localized elevation of cytosolic free calcium is associated with cytokinesis in the zebrafish embryo.Calcium waves along the cleavage furrows in cleavage-stage Xenopus embryos and its inhibition by heparin.An essential role for a membrane lipid in cytokinesis. Regulation of contractile ring disassembly by redistribution of phosphatidylethanolamine.Orientation and three-dimensional organization of actin filaments in dividing cultured cellsPhosphorylation of myosin-II regulatory light chain by cyclin-p34cdc2: a mechanism for the timing of cytokinesis.Myosin II transport, organization, and phosphorylation: evidence for cortical flow/solation-contraction coupling during cytokinesis and cell locomotion.Myosin heavy chain phosphorylation sites regulate myosin localization during cytokinesis in live cells.Nonmuscle myosin II is responsible for maintaining endothelial cell basal tone and stress fiber integrity.Myosin II phosphorylation and the dynamics of stress fibers in serum-deprived and stimulated fibroblasts.Segregated assembly of muscle myosin expressed in nonmuscle cellsAssembly and dynamics of myofibrils.Actin and myosin biochemistry in relation to cytokinesis.Cleavage furrow formation and actin-modulating proteins.Use of fluorescently labeled probes to analyze cell division in living cells.The contractile ring and furrowing in dividing cells.Dynamics of Z-band based proteins in developing skeletal muscle cells.In vivo dynamics of myosin II in Dictyostelium by fluorescent analogue cytochemistry.
P2860
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P2860
description
1987 nî lūn-bûn
@nan
1987年の論文
@ja
1987年論文
@yue
1987年論文
@zh-hant
1987年論文
@zh-hk
1987年論文
@zh-mo
1987年論文
@zh-tw
1987年论文
@wuu
1987年论文
@zh
1987年论文
@zh-cn
name
Visualization of myosin in living cells
@ast
Visualization of myosin in living cells
@en
type
label
Visualization of myosin in living cells
@ast
Visualization of myosin in living cells
@en
prefLabel
Visualization of myosin in living cells
@ast
Visualization of myosin in living cells
@en
P2093
P2860
P356
P1476
Visualization of myosin in living cells
@en
P2093
P2860
P304
P356
10.1083/JCB.105.4.1753
P407
P577
1987-10-01T00:00:00Z