Formation of liquid crystals from actin filaments.
暂无分享,去创建一个
[1] M. Coué,et al. Interaction of plasma gelsolin with G-actin and F-actin in the presence and absence of calcium ions. , 1985, The Journal of biological chemistry.
[2] R. Buxbaum,et al. F-actin and microtubule suspensions as indeterminate fluids. , 1987, Science.
[3] P. Chatelain. Sur la diffusion, par les cristaux liquides du type nématique, de la lumière polarisée , 1948 .
[4] C. Coppin,et al. Quantitation of liquid-crystalline ordering in F-actin solutions. , 1992, Biophysical journal.
[5] M. Fechheimer,et al. A 27,000-D core of the Dictyostelium 34,000-D protein retains Ca(2+)- regulated actin cross-linking but lacks bundling activity , 1993, The Journal of cell biology.
[6] M. Yamazaki,et al. Osmoelastic coupling in biological structures: formation of parallel bundles of actin filaments in a crystalline-like structure caused by osmotic stress. , 1989, Biochemistry.
[7] D. DeRosier,et al. Growth conditions control the size and order of actin bundles in vitro. , 1991, Biophysical journal.
[8] T. Odijk. Theory of lyotropic polymer liquid crystals , 1986 .
[9] P. Flory. Statistical Thermodynamics of Mixtures of Rodlike Particles. 5. Mixtures with Random Coils , 1978 .
[10] E. Mandelkow,et al. Role of fimbrin and villin in determining the interfilament distances of actin bundles , 1983, Nature.
[11] M. Kawamura,et al. Electron microscopic particle length of F-actin polymerized in vitro. , 1970, Journal of biochemistry.
[12] Carl Frieden,et al. Microheterogeneity of actin gels formed under controlled linear shear , 1988, The Journal of cell biology.
[13] A. Teŕamoto,et al. Light Scattering and Sedimentation Equilibrium Study on Concentrated Solutions of a Rodlike Polysaccharide Schizophyllan , 1985 .
[14] R. Williams,et al. Microtubule solutions display nematic liquid crystalline structure. , 1990, The Journal of biological chemistry.
[15] T. Maeda,et al. Formation of liquid crystalline phase of actin filament solutions and its dependence on filament length as studied by optical birefringence. , 1991, Biophysical journal.
[16] F. Oosawa. The flexibility of F-actin. , 1980, Biophysical chemistry.
[17] H. Lekkerkerker,et al. Effect of electrostatic interaction on the liquid crystal phase transition in solutions of rodlike polyelectrolytes , 1986 .
[18] S. Asakura,et al. Dark-field light microscopic study of the flexibility of F-actin complexes. , 1980, Journal of molecular biology.
[19] Christoph F. Schmidt,et al. Chain dynamics, mesh size, and diffusive transport in networks of polymerized actin. A quasielastic light scattering and microfluorescence study , 1989 .
[20] D. Dupré,et al. Liquid crystalline properties of solutions of persistent polymer chains , 1991 .
[21] P. Flory,et al. Statistical Thermodynamics of Mixtures of Rodlike Particles. 1. Theory for Polydisperse Systems , 1978 .
[22] P. Janmey,et al. Structure and mobility of actin filaments as measured by quasielastic light scattering, viscometry, and electron microscopy. , 1986, The Journal of biological chemistry.
[23] A. Teŕamoto,et al. Perturbation theory of isotropic-liquid-crystal phase equilibria in polyelectrolyte solutions , 1991 .
[24] J. Spudich,et al. The regulation of rabbit skeletal muscle contraction. I. Biochemical studies of the interaction of the tropomyosin-troponin complex with actin and the proteolytic fragments of myosin. , 1971, The Journal of biological chemistry.
[25] L. Onsager. THE EFFECTS OF SHAPE ON THE INTERACTION OF COLLOIDAL PARTICLES , 1949 .
[26] Jonathan A. Cooper,et al. Microinjection of gelsolin into living cells , 1987, The Journal of cell biology.
[27] A. Teŕamoto,et al. Triphase equilibrium in aqueous solutions of the rodlike polysaccharide schizophyllan , 1984 .
[28] M. Whittaker,et al. Molecular structure of F-actin and location of surface binding sites , 1990, Nature.
[29] T. Pollard,et al. Methods to measure actin polymerization. , 1982, Methods in enzymology.
[30] J. Howard,et al. Flexural rigidity of microtubules and actin filaments measured from thermal fluctuations in shape , 1993, The Journal of cell biology.
[31] On the isotropic-liquid crystal phase separation in a solution of rodlike particles of different lengths , 1984 .
[32] Toshio Yanagida,et al. Direct observation of motion of single F-actin filaments in the presence of myosin , 1984, Nature.
[33] P. Detmers,et al. 7-Chloro-4-nitrobenzeno-2-oxa-1,3-diazole actin as a probe for actin polymerization. , 1981, The Journal of biological chemistry.
[34] R. Buxbaum,et al. Liquid crystal domains and thixotropy of filamentous actin suspensions. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[35] T. Pollard,et al. Identification of a factor in conventional muscle actin preparations which inhibits actin filament self-association. , 1980, Biochemical and biophysical research communications.
[36] A. Teŕamoto,et al. Isotropic-liquid crystal phase equilibrium in semiflexible polymer solutions: effects of molecular weight and ionic strength in polyelectrolyte solutions , 1992 .
[37] T. Steck,et al. Length distribution of F-actin in Dictyostelium discoideum. , 1990, The Journal of biological chemistry.