Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells.

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Standard

Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells. / Pedersen, S F; Hoffmann, E K.

I: Experimental Cell Research, Bind 277, Nr. 1, 2002, s. 57-73.

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningfagfællebedømt

Harvard

Pedersen, SF & Hoffmann, EK 2002, 'Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells.', Experimental Cell Research, bind 277, nr. 1, s. 57-73. https://doi.org/10.1006/excr.2002.5529

APA

Pedersen, S. F., & Hoffmann, E. K. (2002). Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells. Experimental Cell Research, 277(1), 57-73. https://doi.org/10.1006/excr.2002.5529

Vancouver

Pedersen SF, Hoffmann EK. Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells. Experimental Cell Research. 2002;277(1):57-73. https://doi.org/10.1006/excr.2002.5529

Author

Pedersen, S F ; Hoffmann, E K. / Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells. I: Experimental Cell Research. 2002 ; Bind 277, Nr. 1. s. 57-73.

Bibtex

@article{6864d650a0fa11dd86a6000ea68e967b,
title = "Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells.",
abstract = "Osmotic shrinkage of Ehrlich ascites tumor cells (EATC) elicited translocation of myosin II from the cytosol to the cortical region, and swelling elicits concentration of myosin II in the Golgi region. Rho kinase and p38 both appeared to be involved in shrinkage-induced myosin II reorganization. In contrast, the previously reported shrinkage-induced actin polymerization [Pedersen et al. (1999) Exp. Cell Res. 252, 63-74] was independent of Rho kinase, p38, myosin light chain kinase (MLCK), and protein kinase C (PKC), which thus do not exert their effects on the shrinkage-activated transporters via effects on F-actin. The subsequent F-actin depolymerization, however, appeared MLCK- and PKC-dependent, and the initial swelling-induced F-actin depolymerization was MLCK-dependent; both effects were apparently secondary to kinase-mediated effects on cell volume changes. NHE1 in EATC is activated both by osmotic shrinkage and by the serine/threonine phosphatase inhibitor Calyculin A (CL-A). Both stimuli caused Rho kinase-dependent myosin II relocation to the cortical cytoplasm, but in contrast to the shrinkage-induced F-actin polymerization, CL-A treatment elicited a slight F-actin depolymerization. Moreover, Rho kinase inhibition did not significantly affect NHE1 activation, neither by shrinkage nor by CL-A. Implications for the possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation are discussed.",
author = "Pedersen, {S F} and Hoffmann, {E K}",
note = "Keywords: Actins; Amides; Animals; Antibodies; Azepines; Carcinoma, Ehrlich Tumor; Cell Size; Enzyme Activation; Isotonic Solutions; Mice; Myosin Type II; Naphthalenes; Osmosis; Oxazoles; Phosphoprotein Phosphatases; Phosphorylation; Protein Isoforms; Protein-Serine-Threonine Kinases; Pyridines; Signal Transduction; Sodium-Hydrogen Antiporter; Tumor Cells, Cultured",
year = "2002",
doi = "10.1006/excr.2002.5529",
language = "English",
volume = "277",
pages = "57--73",
journal = "Experimental Cell Research",
issn = "0014-4827",
publisher = "Academic Press",
number = "1",

}

RIS

TY - JOUR

T1 - Possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation in Ehrlich ascites tumor cells.

AU - Pedersen, S F

AU - Hoffmann, E K

N1 - Keywords: Actins; Amides; Animals; Antibodies; Azepines; Carcinoma, Ehrlich Tumor; Cell Size; Enzyme Activation; Isotonic Solutions; Mice; Myosin Type II; Naphthalenes; Osmosis; Oxazoles; Phosphoprotein Phosphatases; Phosphorylation; Protein Isoforms; Protein-Serine-Threonine Kinases; Pyridines; Signal Transduction; Sodium-Hydrogen Antiporter; Tumor Cells, Cultured

PY - 2002

Y1 - 2002

N2 - Osmotic shrinkage of Ehrlich ascites tumor cells (EATC) elicited translocation of myosin II from the cytosol to the cortical region, and swelling elicits concentration of myosin II in the Golgi region. Rho kinase and p38 both appeared to be involved in shrinkage-induced myosin II reorganization. In contrast, the previously reported shrinkage-induced actin polymerization [Pedersen et al. (1999) Exp. Cell Res. 252, 63-74] was independent of Rho kinase, p38, myosin light chain kinase (MLCK), and protein kinase C (PKC), which thus do not exert their effects on the shrinkage-activated transporters via effects on F-actin. The subsequent F-actin depolymerization, however, appeared MLCK- and PKC-dependent, and the initial swelling-induced F-actin depolymerization was MLCK-dependent; both effects were apparently secondary to kinase-mediated effects on cell volume changes. NHE1 in EATC is activated both by osmotic shrinkage and by the serine/threonine phosphatase inhibitor Calyculin A (CL-A). Both stimuli caused Rho kinase-dependent myosin II relocation to the cortical cytoplasm, but in contrast to the shrinkage-induced F-actin polymerization, CL-A treatment elicited a slight F-actin depolymerization. Moreover, Rho kinase inhibition did not significantly affect NHE1 activation, neither by shrinkage nor by CL-A. Implications for the possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation are discussed.

AB - Osmotic shrinkage of Ehrlich ascites tumor cells (EATC) elicited translocation of myosin II from the cytosol to the cortical region, and swelling elicits concentration of myosin II in the Golgi region. Rho kinase and p38 both appeared to be involved in shrinkage-induced myosin II reorganization. In contrast, the previously reported shrinkage-induced actin polymerization [Pedersen et al. (1999) Exp. Cell Res. 252, 63-74] was independent of Rho kinase, p38, myosin light chain kinase (MLCK), and protein kinase C (PKC), which thus do not exert their effects on the shrinkage-activated transporters via effects on F-actin. The subsequent F-actin depolymerization, however, appeared MLCK- and PKC-dependent, and the initial swelling-induced F-actin depolymerization was MLCK-dependent; both effects were apparently secondary to kinase-mediated effects on cell volume changes. NHE1 in EATC is activated both by osmotic shrinkage and by the serine/threonine phosphatase inhibitor Calyculin A (CL-A). Both stimuli caused Rho kinase-dependent myosin II relocation to the cortical cytoplasm, but in contrast to the shrinkage-induced F-actin polymerization, CL-A treatment elicited a slight F-actin depolymerization. Moreover, Rho kinase inhibition did not significantly affect NHE1 activation, neither by shrinkage nor by CL-A. Implications for the possible interrelationship between changes in F-actin and myosin II, protein phosphorylation, and cell volume regulation are discussed.

U2 - 10.1006/excr.2002.5529

DO - 10.1006/excr.2002.5529

M3 - Journal article

C2 - 12061817

VL - 277

SP - 57

EP - 73

JO - Experimental Cell Research

JF - Experimental Cell Research

SN - 0014-4827

IS - 1

ER -

ID: 6768938