Role of actin filament organization in cell volume and ion channel regulation.
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[1] J H Hartwig,et al. Actin-binding proteins 1: spectrin superfamily. , 1994, Protein profile.
[2] P. Welling,et al. Effect of barium on cell volume regulation in rabbit proximal straight tubules. , 1985, The American journal of physiology.
[3] M. Schwartz,et al. How actin binds and assembles onto plasma membranes from Dictyostelium discoideum , 1988, The Journal of cell biology.
[4] P. Janmey,et al. Actin-binding protein requirement for cortical stability and efficient locomotion. , 1992, Science.
[5] H. Sackin. A stretch-activated K+ channel sensitive to cell volume. , 1989, Proceedings of the National Academy of Sciences of the United States of America.
[6] J. Morrow. The spectrin membrane skeleton: emerging concepts. , 1989, Current opinion in cell biology.
[7] I. Pastan,et al. Purification and properties of filamin, and actin binding protein from chicken gizzard. , 1976, The Journal of biological chemistry.
[8] T D Pollard,et al. Actin and actin-binding proteins. A critical evaluation of mechanisms and functions. , 1986, Annual review of biochemistry.
[9] T. Mitchison,et al. Actin-dependent motile forces and cell motility. , 1994, Current opinion in cell biology.
[10] J. Hartwig,et al. Actin-binding proteins. , 1991, Current opinion in cell biology.
[11] K. Zaner,et al. Nonideality of volume flows and phase transitions of F-actin solutions in response to osmotic stress. , 1987, Biophysical journal.
[12] W. Rees,et al. Identification of a Na+,K+, Cl--cotransport protein of Mr 34 000 from kidney by photolabeling with [3H]bumethanide. The protein is associated with cytoskeleton components. , 1984, Biochimica et biophysica acta.
[13] B. Geiger. Microfilament-membrane interaction , 1985 .
[14] A. Hitt,et al. Membrane interactions with the actin cytoskeleton. , 1994, Current opinion in cell biology.
[15] H. Cantiello,et al. Activation of epithelial Na+ channels by protein kinase A requires actin filaments. , 1993, The American journal of physiology.
[16] R. Moon,et al. Identification of a 33-kilodalton cytoskeletal protein with high affinity for the sodium channel. , 1988, Biochemistry.
[17] T. Stossel. Contribution of actin to the structure of the cytoplasmic matrix , 1984, The Journal of cell biology.
[18] H. Cantiello,et al. Regulation of Epithelial Sodium Channels by Short Actin Filaments* , 1996, The Journal of Biological Chemistry.
[19] H. Cantiello,et al. Renal Epithelial Protein (Apx) Is an Actin Cytoskeleton-regulated Na+ Channel* , 1996, The Journal of Biological Chemistry.
[20] T. Pollard,et al. Structure of actin binding proteins: insights about function at atomic resolution. , 1994, Annual review of cell biology.
[21] Shao-Tang Sun,et al. Phase transitions in ionic gels , 1980 .
[22] P. Hall. The role of the cytoskeleton in hormone action. , 1984, Canadian journal of biochemistry and cell biology = Revue canadienne de biochimie et biologie cellulaire.
[23] K. Weber,et al. Calcium control of microfilaments: uncoupling of the F-actin-severing and -bundling activity of villin by limited proteolysis in vitro. , 1981, Proceedings of the National Academy of Sciences of the United States of America.
[24] Toyoichi Tanaka,et al. Collapse of Gels in an Electric Field , 1982, Science.
[25] M. Schliwa. Action of cytochalasin D on cytoskeletal networks , 1982, The Journal of cell biology.
[26] H. Cantiello,et al. Actin filaments regulate epithelial Na+ channel activity. , 1991, The American journal of physiology.
[27] RD Berlin,et al. Control of cell volume in the J774 macrophage by microtubule disassembly and cyclic AMP , 1981, The Journal of cell biology.
[28] K. Angelides,et al. Ankyrin and spectrin associate with voltage-dependent sodium channels in brain , 1988, Nature.
[29] Nelson Wj,et al. Ankyrin binding to (Na+ + K+)ATPase and implications for the organization of membrane domains in polarized cells. , 1987 .
[30] D. Benos,et al. Amiloride-sensitive sodium channel is linked to the cytoskeleton in renal epithelial cells. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[31] J. Albrecht,et al. Identification of gelsolin, a Ca2+-dependent regulatory protein of actin gel-sol transformation, and its intracellular distribution in a variety of cells and tissues , 1981, The Journal of cell biology.
[32] K. Zaner,et al. Ca2+ control of actin gelation. Interaction of gelsolin with actin filaments and regulation of actin gelation. , 1980, The Journal of biological chemistry.
[33] K. Strange,et al. Cellular and Molecular Physiology of Cell Volume Regulation , 1993 .
[34] D. Bataille,et al. Membrane-cytoskeleton dynamics in rat parietal cells: mobilization of actin and spectrin upon stimulation of gastric acid secretion , 1989, The Journal of cell biology.
[35] H. Cantiello,et al. Vasopressin and protein kinase A activate G protein-sensitive epithelial Na+ channels. , 1993, The American journal of physiology.
[36] H. Cantiello,et al. Actin-binding protein contributes to cell volume regulatory ion channel activation in melanoma cells. , 1993, The Journal of biological chemistry.
[37] L. Byerly,et al. A Cytoskeletal Mechanism for Ca2+ Channel Metabolic Dependence and Inactivation by Intracellular Ca2+ , 1993, Neuron.
[38] K. Luby-Phelps,et al. Physical properties of cytoplasm. , 1994, Current opinion in cell biology.
[39] Carl Frieden,et al. Actin polymerization. The mechanism of action of cytochalasin D. , 1986, The Journal of biological chemistry.
[40] O. Christensen. Mediation of cell volume regulation by Ca2+ influx through stretch-activated channels , 1987, Nature.
[41] M. Kashgarian,et al. Ankyrin links fodrin to the alpha subunit of Na,K-ATPase in Madin-Darby canine kidney cells and in intact renal tubule cells , 1989, The Journal of cell biology.
[42] R. Weihing. The filamins: properties and functions. , 1985, Canadian journal of biochemistry and cell biology = Revue canadienne de biochimie et biologie cellulaire.
[43] T. Pollard,et al. Interaction of actin filaments with microtubules , 1984, The Journal of cell biology.
[44] J. Fox,et al. Identification of actin-binding protein as the protein linking the membrane skeleton to glycoproteins on platelet plasma membranes. , 1985, The Journal of biological chemistry.
[45] N. Nicola,et al. Subunit promiscuity among hemopoietic growth factor receptors , 1991, Cell.
[46] Christian Rosenmund,et al. Calcium-induced actin depolymerization reduces NMDA channel activity , 1993, Neuron.
[47] K. Schlüter,et al. Colocalization of band 3 with ankyrin and spectrin at the basal membrane of intercalated cells in the rat kidney. , 1985, Science.
[48] D. Benos,et al. Protein kinase A phosphorylation and G protein regulation of purified renal Na+ channels in planar bilayer membranes. , 1994, The Journal of biological chemistry.
[49] Paul T Matsudalra. Modular organization of actin crosslinking proteins. , 1991 .
[50] V. Bennett,et al. The spectrin skeleton: from red cells to brain. , 1991, The Journal of clinical investigation.
[51] A. Weeds. Actin-binding proteins—regulators of cell architecture and motility , 1982, Nature.
[52] T. Stossel. On the crawling of animal cells. , 1993, Science.
[53] J. Foskett,et al. Involvement of calcium and cytoskeleton in gallbladder epithelial cell volume regulation. , 1985, The American journal of physiology.
[54] J. Hartwig,et al. Ligand-sensitive binding of actin-binding protein to immunoglobulin G Fc Receptor I (FcγRI) , 1991, Cell.
[55] M. Donowitz,et al. Serum regulates Na+/H+ exchange in Caco-2 cells by a mechanism which is dependent on F-actin. , 1992, The Journal of biological chemistry.
[56] F Sachs,et al. Stretch‐activated single ion channel currents in tissue‐cultured embryonic chick skeletal muscle. , 1984, The Journal of physiology.
[57] M. Morrison-Bogorad,et al. Thymosin beta 10 and thymosin beta 4 are both actin monomer sequestering proteins. , 1993, The Journal of biological chemistry.