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Bach, I., Galcheva-Gargova, Z., Mattei, M.-G., Simon-Chazottes, J., Guenet, L. Cereghini, S. and Yaniv,M (1990). Cloning of human hepatic nuclear factor 1 (HNF1) and chromosomal localization of its gene in man and mouse. Genomics 8, 1-10.[Medline]

Bartkowski, S., Zapp, D., Weber, H., Eberle, G., Zoidl, C., Senkel, S., Klein-Hitpass, L. and Ryffel, G. U (1993). Developmental regulation and tissue distribution of the liver transcription factor LFB1 (HNF1) in Xenopus laevis. Mol. Cell. Biol 13, 421-431.[Abstract/Free Full Text]

Bearer, E. L (1994). Distribution of Xrel in the early Xenopus embryo: a cytoplasmatic and nuclear gradient. Euro. J. Cell Biol 63, 255-268.[Medline]

Blumenfeld, M., Maury, M., Chouard T., Yaniv, M. and Condamine, H (1991). Hepatic nuclear factor 1 (HNF1) shows a wider distribution than products of its known target genes in developing mouse. Development 113, 589-599.[Abstract]

Bouwmeester, T., van Wijk, I., Wedlich, D. and Pieler, T (1994). Functional aspects of B-myb in early Xenopus development. Oncogene 9, 1029-1038.[Medline]

Cereghini, S., Yaniv, M. and Cortese, R (1990). Hepatocyte dedifferentiation and extinction is accompanied by a block in the synthesis of mRNA coding for the transcription factor HNF1/LFB1. EMBO J 9, 2257-2263.[Medline]

Citron B. A., Davis, M. D., Milstein, S., Gutierrez, J., Mendel, D. B., Crabtree, G. R. and Kaufman, S (1992). Identity of 4a-carbinolamine dehydratase, a component of the phenylalanine hydroxylation system, and DCoH, a transregulator of homeodomain proteins. Proc. Natl. Acad. Sci. USA 89, 11891-11894.[Abstract/Free Full Text]

Courtois, G., Morgan, J. G., Campell, L. A., Fourel, G. and Crabtree, G. R (1987). Interaction of a liver-specific nuclear factor with the fibrinogen and1-antitrypsin promoters. Science 238, 688-692.[Abstract/Free Full Text]

Davis, M. D., Kaufman, S. and Milstien, S (1992). Distribution of a 4a-hydroxytetrahydropterin dehydratase in rat tissues. FEBS Letters 302, 73-76.[Medline]

Demartis, A., Maffei, M., Vignali, R., Barsacchi, G. and DeSimone, V (1994). Cloning and developmental expression of LFB3/HNF1\247 transcription factor in Xenopus laevis. Mech. Dev 47, 19-28.[Medline]

De Simone, V., Magistris, L., Lazzaro, D., Gerstner, J., Monaci, P., Nicosia, A. and Cortese, R (1991). LFB3, a heterodimer-forming homeoprotein of the LFB1 family, is expressed in specialized epithelia. EMBO J 10, 1435-1443.[Medline]

Hardon, E. M., Frain, M., Paonessa, G. and Cortese, R (1988). Two distinctfactors interact with the promoter regions of several liver-specific genes. EMBO. J 7, 1711-1719.[Medline]

Harland, R. M (1991). In situ hybridization: An improved whole-mount method for Xenopus embryos. Methods Cell Biol 36, 685-695.[Medline]

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

Hinkley, C. S., Martin, J. F., Leibham, D. and Perry, M (1992). Sequential expression of multiple POU proteins during amphibian early development. Mol. Cell. Biol 12, 638-649.[Abstract/Free Full Text]

Johnson, P. F. and McKnight, S. L (1990). Eukaryotic transcriptional regulatory proteins. Annu. Rev. Biochem 58, 799-839.[Medline]

Kindy, M. S. and Verma, I. M (1990). Developmental expression of the Xenopus laevis fos protooncogene. Cell Growth & Diff 1, 27-37.[Abstract]

Klein-Hitpass, L., Schorpp, M., Wagner, U. and Ryffel, G. U (1986). An estrogen responsive element derived from the 5flanking region of the Xenopus vitellogenin A2 gene functions in transfected human cells. Cell 46, 1053-1061.[Medline]

Kugler, W., Wagner, U. and Ryffel, G. U (1988). Tissue specifity of liver gene expression: a common liver-specific promotor element. Nucleic Acids Res 16, 3165-3174.[Abstract/Free Full Text]

Kugler, W., Kaling, M., Ross, K., Wagner, U. and Ryffel, G. U (1990). BAP, a rat liver protein that activates transcription through a promoter element with similarity to the USF/MLTF binding site. Nucleic Acids Res 18, 6943-6951.[Abstract/Free Full Text]

Lichtsteiner, S. and Schibler, U (1989). A glycosylated liver-specific transcription factor stimulates transcription of the albumin gene. Cell 57, 1179-1187.[Medline]

McLean I. W. and Nakane, P. K (1974). Periodate-lysine-paraformaldehyde fixative: a new fixative for immunoelectron microscopy. J. Histochem. Cytochem 22, 1077-1083.[Abstract]

Mendel, D. B., Khavari, P. A., Conley, P. B., Graves, M. K., Hansen, L. P., Admon, A. and Crabtree, G. R (1991). Characterization of a cofactor that regulates dimerization of a mammalian homeodomain protein. Science 254, 1762-1767.[Abstract/Free Full Text]

Mendel, D. B., Hansen, L. P., Graves, M. K., Conley, P. B. and Crabtree, G. R (1991). HNF-1and HNF-1 (vHNF1) share dimerization and homeo domains, but not activation domains, and form heterodimers in vitro. Genes Dev 5, 1042-1056.[Abstract/Free Full Text]

Monaci, P., Nicosia, A. and Cortese, R (1988). Two different liver-specific-factors stimulate in vitro transcription from the human1-antitrypsin promoter. EMBO J 7, 2075-2087.[Medline]

Nicosia, A., Tafi, R. and Monaci, P (1992). Trans-dominant inhibition of transcription activator LFB1. Nucleic Acids Res 20, 5321-5328.[Abstract/Free Full Text]

Principaud, E. and Spohr, G (1991). Xenopus laevis c-myc I and II genes: molecular structure and developmental expression. Nucleic Acids Res 19, 3081-3088.[Abstract/Free Full Text]

Richardson, J. C., Estrabot, A. G. and Woodland, H. R (1994). XrelA, a Xenopus maternal and zygotic homologue of the p65 subunit od NF-B. Characterization of transcriptional properties in the developing embryo and identification of a negative interfering mutant. Mech. Dev 45, 173-189.[Medline]

Ryffel, G. U., Kugler, W., Wagner, U. and Kaling, M (1989). Liver cell specific transcription in vitro: the promoter elements HP1 and TATA box are necessary and sufficient to generate a liver-specific promoter. Nucleic Acids Res 17, 939-953.[Abstract/Free Full Text]

Schorpp, M., Kugler, W., Wagner, U. and Ryffel, G. U (1988). Hepatocyte-specific promoter element HP1 of the Xenopus albumin gene interacts with transcriptional factors of mammalian hepatocytes. J. Mol. Biol 202, 307-320.[Medline]

Stiegler, P., Wolff, C. M., Meyer, D., Senan, F., Durliat, M., Hourdry, J., Befort, N. and Remy, P (1993). The c-ets-1 proto-oncogene in Xenopus laevis-Expression during oogenesis and embryogenesis. Mech. Dev 41, 163-14.[Medline]

Taylor, M. V., Gurdon, J. B., Hopwood, N. D., Towers, N. and Mohun, T. J (1991). Xenopus embryos contain a somite-specific, MyoD-like protein that binds to a promoter site required for muscle actin expression. Genes Dev 5, 1149-1160.[Abstract/Free Full Text]

Tronche, F. and Yaniv, M (1992). HNF1, a homeoprotein member of the hepatic transcription regulatory network. BioEssays 14, 579-587.[Medline]

Whitfield, T., Heasman, J. and Wylie, C (1993). XLPOU-60, a Xenopus POU-domain mRNA, is oocyte-specific from very early stages of oogenesis, and localised to presumptive mesoderm and ectoderm in the blastula. Dev. Biol 155, 361-370.[Medline]

Zapp, D., Bartkowski, S., Holewa, B., Zoidl, C., Klein-Hitpass, L. and Ryffel, G. U (1993). Elements and factors involved in tissue specific and embryonic expression of the liver transcription factor LFB1 in Xenopus laevis. Mol. Cell. Biol 13, 6416-6426.[Abstract/Free Full Text]




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