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Articles

Some Aspects of Chemotaxis Using the Cellular Slime Molds as an Example

Pages 443-459 | Published online: 12 Sep 2018

LITERATURE CITED

  • Adam, L. 1973. Senior thesis, Princeton University.
  • Alcantra, F., and M. Monk. 1974. Signal propagation during aggregation in the slime mold Dictyostelium discoideum. J. Gen. Microbiol. 85: 321–334.
  • Aswanikumar, S., E. Schiffmann, B. A. Corcoran, and S. M. Wahl. 1976. Role of a peptidase in phagocyte Chemotaxis. Proc. Natl. Acad. Sci. USA 73: 2439–2442.
  • Bonner, J. T. 1947. Evidence for the formation of cell aggregates by Chemotaxis in the development of the slime mold Dictyostelium discoideum. J. Exp. Zool. 106: 1–26.
  • Bonner, J. T. 1970. The chemical ecology of cells in the soil. Pp. 1–19. In Chemical ecology, E. Sondheimer and J. B. Simeone, Eds. Academic Press, New York.
  • Bonner, J. T., and M. S. Adams. 1958. Cell mixtures of different species and strains of cellular slime molds. J. Embryol. Exp. Morphol. 6: 346–356.
  • Bonner, J. T., and M. S. Adams, D. S. Barkley, E. M. Hall, T. M. Konijn, J. W. Mason, G. O'Keefe III, and P. B. Wolfe. 1969. Acrasin, acrasinase and the sensitivity to acrasin in Dictyostelium discoideum. Developm. Biol. 20: 72–87.
  • Bonner, J. T., and M. S. Adams, D. S. Barkley, E. M. Hall, T. M. Konijn, J. W. Mason, G. O'Keefe III, and P. B. Wolfe, and M. R. Dodd. 1962. Evidence for a gas-induced orientation in the cellular slime molds. Developm. Biol. 5: 344–361.
  • Bonner, J. T., and M. S. Adams, D. S. Barkley, E. M. Hall, T. M. Konijn, J. W. Mason, G. O'Keefe III, and P. B. Wolfe, and M. R. Dodd, E. M. Hall, W. Sachsenmaier, and B. K. Walker. 1970. Evidence for a second chemotactic system in the cellular slime mold, Dictyostelium discoideum. J. Bacteriol. 102: 682–687.
  • Bonner, J. T., and M. S. Adams, D. S. Barkley, E. M. Hall, T. M. Konijn, J. W. Mason, G. O'Keefe III, and P. B. Wolfe, and M. R. Dodd, E. M. Hall, W. Sachsenmaier, and B. K. Walker, and M. E. Hoffman. 1963. Evidence for a substance responsible for the spacing pattern of aggregation and fruiting in the cellular slime molds. J. Embryol. Exp. Morphol. 11: 571–589.
  • Bonner, J. T., and M. S. Adams, D. S. Barkley, E. M. Hall, T. M. Konijn, J. W. Mason, G. O'Keefe III, and P. B. Wolfe, and M. R. Dodd, E. M. Hall, W. Sachsenmaier, and B. K. Walker, and M. E. Hoffman, A. P. Kelso, and R. G. Gillmor. 1966. A new approach to the problem of aggregation in the cellular slime molds. Biol. Bull. 130: 28–42.
  • Clarke, M. A., D. Francis, and R. Eisenberg. 1973. Mating types in cellular slime molds. Biochem. Biophys. Res. Comm. 52: 672–678.
  • Cohen, M. H., and A. Robertson. 1971. Chemotaxis and the early stages of aggregation in cellular slime molds. J. Theoret. Biol. 31: 119–130.
  • Darmon, M., P. Brachet, and P. da Silva. 1975. Chemotactic signals induce cell differentiation in Dictyostelium discoideum. Proc. Natl. Acad. Sci. USA 72: 3163–3166.
  • Durston, A. J. 1974. Pacemaker activity during aggregation in Dictyostelium discoideum. Developm. Biol. 37: 225–235.
  • Erdos, G. W., K. B. Raper, and L. Vogen. 1973. Mating types and macrocyst formation in Dictyostelium discoideum. Proc. Natl. Acad. Sci. USA 70: 1828–1830.
  • George, R. P. 1976. Disruption of multicellular organization in the cellular slime molds by cyclic AMP. Cell Differ. 5: xxx–xxx.
  • Gerisch, G. 1976. Extracellular cyclic-AMP phosphodiesterase regulation in agar plate cultures of Dictyostelium discoideum. Cell Differ. 5: 21–25.
  • Gerisch, G., H. Fromm, A. Huesgen, and U. Wick. 1975a. Control of cell-contact sites by cyclic AMP pulses in differentiating Dictyostelium cells. Nature 255: 547–549.
  • Gerisch, G., H. Fromm, A. Huesgen, and U. Wick, and B. Hess. 1974. Cyclic AMP-controlled oscillations in suspended Dictyostelium cells: their relation to morphogenetic cell interactions. Proc. Natl. Acad. Sci. USA 71: 2118–2122.
  • Gerisch, G., H. Fromm, A. Huesgen, and U. Wick, and B. Hess, D. Hülser, D. Malchow, and U. Wick. 1975b. Cell communication by periodic cyclic AMP pulses. Philos. Trans. B, 272: 181–192.
  • Gerisch, G., H. Fromm, A. Huesgen, and U. Wick, and B. Hess, D. Hülser, D. Malchow, and U. Wick, and D. Malchow. 1976. Cyclic AMP receptors and the control of cell aggregation in Dictyostelium. In Advances in cyclic nucleotide research, Vol. 7, P. Greengard and G. A. Robison, Eds. Raven Press (in press).
  • Gerisch, G., H. Fromm, A. Huesgen, and U. Wick, and B. Hess, D. Hülser, D. Malchow, and U. Wick, and D. Malchow, and U. Wick. 1975. Intracellular oscillations and release of cyclic AMP from Dictyostelium cells. Biochem. Biophys. Res. Comm. 65: 364–370.
  • Gooday, G. W. 1975. Chemotaxis and chemotropism in fungi and algae. Pp. 155–204. In Primitive sensory and communication systems, M. J. Carlile, Ed. Academic Press, New York.
  • Green, A. A., and P. C. Newell. 1975. Evidence for the existence of two types of cAMP binding sites in aggregation cells of Dictyostelium discoideum. Cell 6: 129–136.
  • Henderson, E. J. 1975. The cyclic AMP receptor of Dictyostelium discoideum. J. Biol. Chem. 250: 4730–4736.
  • Horn, E. G. 1971. Food competition among cellular slime molds (Acrasieae). Ecology 52: 475–484.
  • Keating, M. T. 1976. Senior thesis, Princeton University.
  • Keller, E. F., and L. A. Segel. 1970. Conflict between positive and negative feedback as an explanation for the initiation of aggregation in slime mould amoebae. Nature 227: 1365–1366.
  • Konijn, T. H. 1961. Ph.D. Thesis, University of Wisconsin.
  • Konijn, T. H. 1975. Chemotaxis in the cellular slime molds. Pp. 102–153. In Primitive sensory and communication systems, M. J. Carlile, Ed. Academic Press, New York.
  • Malchow, D., J. Fulchila, and V. Nanjundiah. 1975. A plausible role for a membrane bound cyclic AMP phosphodiesterase in cellular slime mold Chemotaxis. Biochim. Biophys. Acta 385: 421–428.
  • Malchow, D., J. Fulchila, and V. Nanjundiah, and G. Gerisch. 1973. Cyclic AMP binding to living cells of Dictyostelium discoideum in presence of excess cyclic GMP. Biochem. Biophys. Res. Comm. 55: 200–204.
  • Malchow, D., J. Fulchila, and V. Nanjundiah, and G. Gerisch. 1974. Short-term binding and hydrolysis of cyclic 3′:5′-adenosine monophosphate by aggregating Dictyostelium cells. Proc. Natl. Acad. Sci. USA 71: 2423–2427.
  • Malchow, D., J. Fulchila, and V. Nanjundiah, and G. Gerisch, B. Nägele, H. Schwartz, and G. Gerisch. 1972. Membrane-bound cyclic AMP phosphodiesterase in chemotactically responding cells of Dictyostelium discoideum. Eur. J. Biochem. 28: 136–142.
  • Malkinson, A. M., and J. M. Ashworth. 1973. Adenosine 3′:5′-cyclic monophosphate concentrations and phosphodiesterase activities during axenic growth and differentiation of cells of the cellular slime mould Dictyostelium discoideum. Biochem. J. 134: 311–319.
  • Mato, J. M., and T. M. Konijn. 1975. Chemotaxis and binding of cyclic AMP in cellular slime molds. Biochem. Biophys. Acta 385: 173–179.
  • Mato, J. M., and T. M. Konijn, A. Losada, V. Nanjundiah, and T. M. Konijn. 1975. Signal input for a chemotactic response in the cellular slime mold Dictyostelium discoideum. Proc. Natl. Acad. Sci. USA 72: 4991–4993.
  • Newell, P. C., and A. A. Green. 1976. Requirements for Type II cAMP receptors for signal relay and stream formation in the slime mould Dictyostelium. Nature (in press).
  • Ordal, G. W., and D. J. Goldman. 1976. Chemotactic repellents in Bacillus subtilis. J. Molec. Biol. 100: 103–108.
  • Pan, P., E. M. Hall, and J. T. Bonner. 1972. Folic acid as a second chemotactic substance in the cellular slime mould. Nature New Biol. 237: 181–182.
  • Pan, P., E. M. Hall, and J. T. Bonner. 1975. Determination of the active portion of the folic acid molecule in cellular slime mold Chemotaxis. J. Bad. 122: 185–191.
  • Parkinson, J. S. 1975. Genetics of chemotactic bacteria. Cell 4: 183–188.
  • Raper, K. B. 1940. The communal nature of the fruiting process in the Acrasieae. Amer. J. Bot. 27: 436–448.
  • Raper, K. B. 1960. Levels of cellular interaction in amoeboid populations. Proc. Amer. Philos. Soc. 104: 579–604.
  • Raper, K. B., and C. Thom. 1941. Interspecific mixtures in the Dictyosteliaceae. Amer. J. Bot. 28: 69–78.
  • Samuel, E. W. 1961. Orientation and rate of locomotion of individual amoebae in the life cycle of the cellular slime mold Dictyostelium mucoroides. Developm. Biol. 3: 317–335.
  • Schiffmann, E., B. A. Corcoran, and S. M. Wahl. 1975. N-formylmethionyl peptides as chemoattractants in leucocytes. Proc. Natl. Acad. Sci. USA 72: 1059–1062.
  • Shaffer, B. M. 1953. Aggregation in the cellular slime moulds: in vitro isolation of acrasin. Nature 171: 975.
  • Shaffer, B. M. 1957a. Aspects of aggregation in cellular slime moulds. I. Orientation and Chemotaxis. Amer. Naturalist. 91: 19–35.
  • Shaffer, B. M. 1957b. Properties of slime-mould amoebae of significance for aggregation. Quart. J. Microscop. Sci. 98: 377–392.
  • Shaffer, B. M. 1957c. Variability of behavior of aggregating cellular slime moulds. Quart. J. Microscop. Sci. 98: 393–405.
  • Shaffer, B. M. 1975. Secretion of cyclic AMP induced by cyclic AMP in the cellular slime mould, Dictyostelium discoideum. Nature 255: 549–552.
  • Tsang, N., R. Macnab, and D. E. Koshland. 1973. Common mechanism for repellents and attractants in bacterial Chemotaxis. Science 181: 60–63.
  • Twitty, V. C. 1949. Developmental analysis of amphibian pigment cells. Growth Symposium 9: 131–161.
  • Wier, P. W. 1976. Ph.D. thesis, Princeton University.
  • Wilkinson, P. C. 1975. Chemotaxis in leucocytes. Pp. 205–243. In Primitive sensory and communication systems, M. J. Carlile, Ed. Academic Press, New York.
  • Wurster, B., P. Pan, G. G. Tyan, and J. T. Bonner. 1976. Preliminary characterization of the acrasin of the cellular slime mold Polysphondylium violaceum. Proc. Natl. Acad. Sci. USA 73: 795–799.
  • Zigmond, S. H. 1974. Mechanisms of sensing chemical gradients by polymorphonuclear leukocytes. Nature 249: 450–452.

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