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Barth, L. G. and Barth, L. J (1974). Ionic regulation of embryonic induction and cell differentiation in Rana pipiens. Dev. Biol 39, 1-22.[Medline]

Blackshaw, S. E. and Warner, A. E (1976). Alterations in resting membrane properties at neural plate stages of development in the nervous system. J. Physiol 255, 231-247.

Bolce, M. E., Hemmati-Brivanlou, A., Kushner, P. D. and Harland, R. M (1992). Ventral ectoderm of Xenopus forms neural tissue, including hindbrain, in response to activin. Development 115, 681-688.[Abstract]

Breckenridge, L. J. and Warner, A. E (1982). Intracellular sodium and the differentiation of amphibian embryonic neurones. J. Physiol 322, 393-413.

Chaillet, J. R. and Boron, W. F (1985). Intracellular calibration of a pH-sensitive dye in isolated perfused salamander proximal tubules. J. Gen. Physiol 86, 765-794.[Abstract/Free Full Text]

Dixon, J. E. and Kintner, C. R (1989). Cellular contacts required for neural induction in Xenopus embryos: evidence for two signals. Development 106, 749-757.[Abstract/Free Full Text]

Doniach, T., Phillips, C.R. and Gerhart, J.C (1992). Planar induction of anteroposterior pattern in the developing central nervous system of Xenopus laevis. Science 257, 542-545.[Abstract/Free Full Text]

Gillespie, J. I (1983). The distribution of small ions during the early development of Xenopus laevis and Ambystoma mexicanum embryos. J. Physiol 344, 359-377.

Grandin, N. and Charbonneau, M (1991). Intracellular pH and intracellular free calcium responses to protein kinase C activators and inhibitors in Xenopus eggs. Development 112, 461-470.[Abstract]

Guthrie, S., Turin, L. and Warner, A (1988). Patterns of junctional communication during development of the early amphibian embryo. Development 103, 769-783.[Abstract/Free Full Text]

Hemmati-Brivanlou, A. and Harland, R. M (1989). Expression of an engrailed-related protein is induced in anterior neural ectoderm of early Xenopus embryos. Development 106, 611-617.[Abstract]

Holtfreter, J (1947). Neural induction in explants which have passed through a sublethal cytolysis. J. Exp. Zool 106, 197-222.

Hyrc, K. and Rose, B (1990). The action of v-src on gap junctional permeability is modulated by pH. J. Cell Biol 110, 1217-1226.[Abstract/Free Full Text]

Jacobson, M. and Rutishauser, U (1986). Induction of neural cell adhesion molecule (N-CAM) in Xenopus embryos. Dev. Biol 116, 524-531.[Medline]

Jiang, W., Veno, P. A., Wood, R. W., Peaucellier, G. and Kinsey, W. H (1991). pH regulation of an egg cortex tyrosine kinase. Dev. Biol 146, 81-88.[Medline]

Keller, R. E., Danilchik, M., Gimlich, R. and Shih, J (1985). The function and mechanism of convergent extension during gastrulation of Xenopus laevis. J. Embryol. Exp. Morph 89, 185-209.

Keller, R. and Danilchik, M (1988). Regional expression, pattern and timing of convergence and extension during gastrulation of Xenopus laevis. Development 103, 193-209.[Abstract]

Keller, R., Shih, J. and Sater, A. K (1992). The cellular basis of the convergence and extension of the Xenopus neural plate. Developmental Dynamics 193, 199-217.[Medline]

Keller, R., Shih, J., Sater, A. K. and Moreno, C (1992). Planar induction of convergence and extension of the neural plate by the organizer of Xenopus. Developmental Dynamics 193, 218-234.[Medline]

Kintner, C. R. and Melton, D. A (1987). Expression of Xenopus N-CAM RNA is an early response to neural induction. Development 99, 311-325.[Abstract]

Lamborghini, J. E (1980). Rohon-Beard cells and other large neurons in Xenopus embryos originate during gastrulation. J. Comp. Neurol 189, 323-333.[Medline]

Lee, S. C. and Steinhardt, R. A (1981). Observations on intracellular pH during cleavage of eggs of Xenopus laevis. J. Cell Biol 91, 414-419.[Abstract/Free Full Text]

Moolenaar, W (1986). Effects of growth factors on intracellular pH regulation. Ann. Rev. Physiol 48, 363-376.[Medline]

Murray, A. and Kirschner, M (1989). Cyclin synthesis drives the early embryonic cell cycle. Nature 339, 275-280.[Medline]

Otte, A. P., van Run, P., Heideveld, M., van Driel, R. and Durston, A. J (1989). Neural induction is mediated by cross-talk between the protein kinase C and cyclic AMP pathways. Cell 58, 641-648.[Medline]

Otte, A. P., Kramer, I. M., Mannesse, M., Lambrechts, C. and Durston, A. J (1990). Characterization of protein kinase C in early Xenopus embryogenesis. Development 110, 461-470.[Abstract/Free Full Text]

Otte, A. P., Kramer, I. M. and Durston, A. J (1991). Protein kinase C and regulation of the local competence of Xenopus ectoderm. Science 251, 570-573.[Abstract/Free Full Text]

Otte, A. P. and Moon, R. T (1992). Protein kinase C isozymes have distinct roles in induction and competence in Xenopus. Cell 68, 1021-1029.[Medline]

Picard, J. J (1975). Xenopus laevis cement gland as an experimental model for embryonic differentiation. I. In vitro stimulation of differentiation by ammonium chloride. J. Embryol. Exp. Morph 33, 957-967.[Medline]

Rozengurt, E (1992). Growth factors and cell proliferation. Curr. Opin. Cell Biol 4, 161-165.[Medline]

Ruiz i Altaba, A (1992). Planar and vertical signals in the induction and patterning of the Xenopus nervous system. Development 115, 67-80.[Abstract]

Saha, M. S. and Grainger, R. M (1992). A labile period in the determination of the anterior-posterior axis during early neural development in Xenopus laevis. Neuron 8, 1-20.

Sater, A. K., Steinhardt, R. A. and Keller, R (1993). Induction of neuronal differentiation by planar signals in Xenopus laevis. Developmental Dynamics 197, 268-280.[Medline]

Savage, R. and Phillips, C. R (1989). Signals from the dorsal blastopore lip region during gastrulation bias the ectoderm toward a nonepidermal pathway of differentiation in Xenopus laevis. Dev. Biol 133, 157-168.[Medline]

Sive, H. L., Hattori, K. and Weintraub, H (1989). Progressive determination during formation of the anteroposterior axis in Xenopus laevis. Cell 58, 171-180.[Medline]

Spray, D. C., Harris, A. L. and Bennett, M. V. L (1981). Gap junctional conductance is a simple and sensitive function of intracellular pH. Science 211, 712-714.[Abstract/Free Full Text]

Stewart, R. M. and Gerhart, J. C (1990). The anterior extent of dorsal development of the Xenopus embryonic axis depends on the quantity of organizer in the late blastula. Development 109, 363-372.[Abstract]

Swenson, K. I., Piwnica-Worms, H., McNamee, H. and Paul, D. L (1990). Tyrosine phosphorylation of the gap junction protein connexin43 is required for the pp60 v-src -induced inhibition of communication. Cell Regulation 1, 989-1002.[Medline]

Thomas, J. A., Buchsbaum, R. N., Zimniak, A. and Racker, E (1979). Intracellular pH measurements in Ehrlich ascites tumor cells utilizing spectroscopic probes generated in situ. Biochemistry 18, 2210-2218.[Medline]

Turin, L. and Warner, A. E (1980). Intracellular pH in early Xenopus embryos: its effect on current flow between blastomeres. J. Physiol 300, 489-504.

Warner, A. E., Guthrie, S. C. and Gilula, N. B (1984). Antibodies to gap junction protein selectively disrupt junctional communication in the early amphibian embryo. Nature 311, 127-131.[Medline]




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