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Bach, I., Rhodes, S. J., Pearse, R. V. II., Gloss, B., Scully, K. M., Sawchenko, P. E. and Rosenfeld, M. G (1995). P-Lim , a LIM homeodomain factor, is expressed during pituitary organ and cell commitment and synergizes with Pit- 1. Proc. Natl. Acad. Sci. USA 92, 2720-2724.[Abstract/Free Full Text]

Bach, I., Carriere, C., Ostendorff, H. P., Andersen, B. and Rosenfeld M. G (1997). A family of LIM domain-associated cofactors confer transcriptional synergism between LIM and Ot x homeodomain proteins. Genes Dev 11, 1370-1380.[Abstract/Free Full Text]

Camper, S. A., Saunders, T. L., Katz, R. W. and Reeves, R. H (1990). The Pit -1 transcription factor is a candidate for the Snell dwarf mutation. Genomics 8, 586-590.[Medline]

Couly, G. F. and Le Douarin, N. M (1988). The fate map of the cephalic neural primordium at the presomitic to the 3-somite stage in the avian embryo. Development 103, 101-113.

Crossley, P. H. and Martin, G. R (1995). The mouse Fgf 8 gene encodes a family of polypeptides and is expressed in regions that direct outgrowth and patterning in the developing embryo. Development 121, 439-451.[Abstract]

Daikoku, S., Chikamori, M., Adachi, T. and Maki, Y (1982). Effect of basal diencephalon on the development of Rathke's pouch in rats: A study in combined organ culture. Dev. Biol 90, 198-202.[Medline]

Ericson, J., Norlin, S., Jessell, T. M. and Edlund, T (1998). Integrated FGF and BMP signaling controls the progression of progenitor cell differentiation and the emergence of pattern in the embryonic anterior pituitary. Development 125, 1005-1015.[Abstract]

Ferrand, R (1972). Experimental study of the factors in cytological differentiation of the adenohypophysis in the chick embryo. Arch. Biol 83, 293-371.

Gage, P. J. and Camper, S. A (1997). Pituitary homeobox 2, a novel member of the bicoid -related family of homeobox genes, is a potential regulator of anterior structure formation. Hum. Mol. Genet 6, 457-464.[Abstract/Free Full Text]

Hermesz, E., Mackem, S. and Mahon, K. A (1996). Rpx : a novel anterior-restricted homeobox gene progressively activated in the prechordal plate, anterior neural plate and Rathke's pouch of the mouse embryo. Development 122, 41-52.[Abstract]

Jones, C. M., Lyons, K. M. and Hogan, B. L. M (1991). Involvement of bone morphogenetic protein -4 ( BMP -4) and Vgr -1 in morphogenesis and neurogenesis in the mouse. Development 111, 531-542.[Abstract]

Kawamura, K. and Kikuyama, S (1995). Induction from posterior hypothalamus is essential for the development of the pituitary proopiomelacortin (POMC) cells of the toad (Bufo japonicus). Cell Tiss. Res 279, 233-239.[Medline]

Kimura, S., Hara, Y., Pineau, T., Fernandez-Salguero, P., Fox, C. H., Ward, J. M. and Gonzalez, F. J (1996). The T/ebp null mouse: thyroid-specific enhancer-binding protein is essential for the organogenesis of the thyroid, lung, ventral forebrain, and pituitary. Genes Dev 10, 60-69.[Abstract/Free Full Text]

Kusakabe, M., Sakakura, T., Sano, M. and Nishizuka, Y (1984). Early development of mouse anterior pituitary: role of mesenchyme. Dev. Growth Differ 26, 263-271.

Lamonerie, T., Tremblay, J. J., Lanctot, C., Therrien, M., Gauthier, Y. and Drouin, J (1996). Ptx 1, a bicoid -related homeobox transcription factor involved in transcription of the pro-opiomelancortin gene. Genes Dev 10, 1284-1295.[Abstract/Free Full Text]

Lanctot, C., Lamolet, B. and Drouin, J (1997). The bicoid -related homeoprotein Ptx 1 defines the most anterior domain of the embryo and differentiates posterior from anterior lateral mesoderm. Development 124, 2807-2817.[Abstract]

Lazzaro, D., Price, M., De Felice, M. and Di Lauro, R (1991). The transcription factor TTF- 1 is expressed at the onset of thyroid and lung morphogenesis and in restricted regions of the foetal brain. Development 113, 1093-1104.[Abstract]

Li, S., Crenshaw, E. B., Rawson, E. J., Simmons, D. M., Swanson, L. W. and Rosenfeld M. G (1990). Dwarf locus mutants lacking three pituitarycell types result from mutations in the POU-domain gene Pit -1. Nature 347, 528-530.[Medline]

Li, H., Witte, D. P., Branford, W. W., Aronow, B. J., Weinstein, M., Kaur, S., Wert, S., Singh, G., Schreiner, C. M., Whitsett, J. A. et al., (1994). Gsh-4 encodes a LIM-type homeodomain, is expressed in the developing central nervous system and is required for early postnatal survival. EMBO J 13, 2876-2885.[Medline]

Meyers, E. N., Lewandoski, M. and Martin, G. R (1998). An Fgf 8 mutant allelic series generated by Cre-and Flp-mediated recombination. Nat. Genet 18, 136-141.[Medline]

Mucchielli, M. L., Martinez, S., Pattyn, A., Gordis, C. and Brunet, J. F (1996). Otlx 2, and Otx -related homeobox gene expressed in the pituitary gland and in a restricted pattern in the forebrain. Mol. Cell. Neurosci 8, 258-271.[Medline]

Oliver G., Mailhos, A., Wehr, R., Copeland, N. G., Jenkins, N. and Gruss, P (1995). Six 3, a murine homologue of the sine ocularis gene, demarcates the most anterior border of the developing neural plate and is expressed during eye development. Development 121, 4045-4055.[Abstract]

Pfaff, S. L., Mendelsohn, M., Stewart, C. L., Edlund, T. and Jessell, E. M (1996). Requirement for LIM homeobox gene Isl 1 in motor neuron generation reveals a motor neuron-dependent step in interneuron differentiation. Cell 84, 309-320.[Medline]

Robinson, G. W., Wray, S. and Mahon, K. A (1991). Spatially restricted expression of a member of a new family of murine Distal-less homeobox genes in the developing forebrain. New Biol 3, 1183-1194.[Medline]

Schwind, J. L (1928). The development of the hypophysis cerebri of the albino rat. Am. J. Anat 41, 295-315.

Semina, E. V., Reiter, R., Leysens, N. J., Alward, W. L., Small, K. W., Datson, N. A., Siegel-Bartelt, J., Bierke-Nelson, D., Bitoun, P., Zabel, B. U. et al., (1996). Cloning and characterization of a novel bicoid -related homeobox transcription factor gene, RIEG, involved in Rieger syndrome. Nat. Genet 14, 392-399.[Medline]

Sheng, H. Z., Zhadanov, A. B., Mosinger, A. B., Fujii, T., Bertuzzi, S., Grinberg, A., Lee, E. J., Huang, S. P., Mahon, K. A. and Westphal, H (1996). Specification of pituitary cell lineages by the LIM homeobox gene Lhx 3. Science 272, 1004-1007.[Abstract]

Sheng, H. Z., Moriyama, K., Yamashita, T., Li, H., Potter, S. S., Mahon, K. A. and Westphal, H (1997). Multistep control of pituitary organogenesis. Science 278, 1809-1812.[Abstract/Free Full Text]

Shimamura, K., Hartiganm D, J., Martinez. S., Puelles, L. and Rubenstein, J. L (1995). Longitudinal organization of the anterior neural plate and neural tube. Development 121, 3923-3933.[Abstract]

Sornson, M. W., Wu, W., Dasen, J. S., Flynn, S. E., Norman, D. J., O'Connell, S. M., Gukovsky, I., Carriere, C., Ryan, A. K., Miller, A. P. et al., (1996). Pituitary lineage determination by the prophet of Pit- 1 homeodomain factor defective in Ames dwarfism. Nature 384, 327-333.[Medline]

Szeto, D. P., Ryan, A. K., O'Connel, S. M. and Rosenfeld, M. G (1996). P - OTX : a Pit -1-interacting homeodomain factor expressed during anterior pituitary gland development. Proc. Natl. Acad. Sci. USA 93, 7706-7710.[Abstract/Free Full Text]

Treier, M. and Rosenfeld, M. G (1996). The hypothalamic-pituitary axis: co-development of two organs. Current Opinion in Cell Biology 8, 833-843.[Medline]

Treier, M., Gleiberman, A. S., O'Connell, S. M., Szeto, D. P., McMahon, J. A., McMahon, A. P. and Rosenfeld, M. G (1998). Multistep signaling requirements for pituitary organogenesis in vivo. Genes Dev 12, 1691-1704.[Abstract/Free Full Text]

Watanabe, Y. G (1982). Effects of brain and mesenchyme upon the cytogenesis of rat adenohypophysis in vitro. Differentiation of adrenocorticotropes. Cell Tiss. Res 227, 257-266.[Medline]

Watanabe, Y. G (1982). An organ culture study of the site of determination of ACTH and LH cells in the rat adenohypophysis. Cell Tiss. Res 227, 267-275.[Medline]

Watkins-Chow, D. E. and Camper, S. A (1998). How many homeobox genes does it take to make a pituitary gland?. Trends in Genet 14, 284-290.[Medline]

Winnier, G., Blessing, M., Labosky, P. A. and Hogan, B. L. M (1995). Bone morphogenetic protein -4 is required for mesoderm formation and patterning in the mouse. Genes Dev 9, 2105-2116.[Abstract/Free Full Text]

Zimmerman, L. B., De Jesus-Escobar, J. M. and Harland, R. M (1996). The Spemann organizer signal noggin binds and inactivates bone morphogenetic protein 4. Cell 86, 599-606.[Medline]


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