2
Views
17
CrossRef citations to date
0
Altmetric
Gene Expression

Tissue-Specific Transcription of the Mouse α-Fetoprotein Gene Promoter Is Dependent on HNF-1

, , &
Pages 4204-4212 | Received 22 May 1989, Accepted 26 Jun 1989, Published online: 01 Apr 2023

LITERATURE CITED

  • Aviv, H., and P. Leder. 1972. Purification of biologically active globin mRNA by chromatography on oligothymidylic acid-cellulose. Proc. Natl. Acad. Sci. USA 69:1408–1412.
  • Banerji, J., L. Olson, and W. Schaffner. 1983. A lymphocyte-specific enhancer is located downstream of the joining region in immunoglobulin heavy chain genes. Cell 33:729–740.
  • Briggs, M. R., J. T. Kadonaga, S. P. Bell, and R. Tjian. 1986. Purification and biochemical characterization of the promoter-specific transcription factor, Spl. Science 23:447–52.
  • Cereghini, S., M. Raymondjean, A. G. Carranca, P. Herbomel, and M. Yaniv. 1987. Factors involved in the control of tissue-specific expression of albumin gene. Cell 50:627–638.
  • Costa, R. H., D. R. Grayson, and J. E. Darnell. 1989. Multiple hepatocyte-enriched nuclear factors function in the regulation of transthyretin and α1-antitrypsin genes. Mol. Cell. Biol. 9:1415–1425.
  • Courtois, G., S. Baumhueter, and G. R. Crabtree. 1988. Purified hepatocyte nuclear factor 1 interacts with a family of hepatocyte-specific promoters. Proc. Natl. Acad. Sci. USA 85:7937–7941.
  • Courtois, G., J. G. Morgan, L. A. Campbell, G. Fourel, and G. R. Crabtree. 1987. Interaction of a liver-specific nuclear factor with the fibrinogen and α1-antitrypsin promoters. Science 238:688–691.
  • Dignam, J. D., R. M. Lebovitz, and R. G. Roeder. 1983. Accurate transcription initiation by RNA polymerase II in a soluble extract from isolated mammalian nuclei. Nucleic Acids Res. 11:1475–1489.
  • Dudov, K. P., and R. P. Perry. 1984. The gene encoding the mouse ribosomal protein L32 contains a uniquely expressed intron containing gene and an unmutated processed gene. Cell 37:457–468.
  • Fried, M., and D. M. Crothers. 1981. Equilibria and kinetics of lac repressor-operator interactions by Polyacrylamide gel electrophoresis. Nucleic Acids Res. 9:6505–6525.
  • Gulies, S. D., S. L. Morrison, V. T. Oi, and S. Tonegawa. 1983. A tissue-specific transcription enhancer element is located in the major intron of a rearranged immunoglobulin heavy chain gene. Cell 33:717–728.
  • Godbout, R., R. Ingram, and S. M. Tilghman. 1986. Multiple regulatory elements in the intergenic region between the α-fetoprotein and albumin genes. Mol. Cell. Biol. 6:477–487.
  • Godbout, R., R. Ingram, and S. M. Tilghman. 1988. Fine-structure mapping of the three mouse α-fetoprotein gene enhancers. Mol. Cell. Biol. 8:1169–1178.
  • Godbout, R., and S. M. Tilghman. 1988. Configuration of the α-fetoprotein gene during development. Genes Dev. 2:949–956.
  • Graves, B. J., P. F. Johnson, and S. L. McKnight. 1986. Homologous recognition of a promoter domain common to the MSV LTR and the HSV tk gene. Cell 45:565–576.
  • Grayson, D. R., R. H. Costa, K. G. Xanthopoulos, and J. E. Darnell. 1988. A cell-specific enhancer of the mouse α1-antitrypsin gene has multiple functional regions and corresponding protein-binding sites. Mol. Cell. Biol. 8:1055–1066.
  • Guertin, M., H. LaRue, D. Bernier, O. Wrange, M. Chevrett, M.-C. Gingras, and L. Belanger. 1988. Enhancer and promoter elements directing activation and glucocorticoid repression of the α-fetoprotein gene in hepatocytes. Mol. Cell. Biol. 8:1398–1407.
  • Harden, E. M., M. Frain, G. Paonessa, and R. Cortese. 1988. Two distinct factors interact with the promoter regions of several liver-specific genes. EMBO J. 7:1711–1719.
  • Herbst, R. S., N. Friedman, J. E. Darnell, and L. E. Babiss. 1989. Positive and negative regulatory elements in the mouse albumin enhancer. Proc. Natl. Acad. Sci. USA 86:1553–1557.
  • Hirt, B.. 1967. Selective extraction of polyoma DNA from infected mouse cultures. J. Mol. Biol. 26:365–369.
  • Jones, K. A., J. T. Kadonaga, P. J. Rosenfeld, T. J. Kelly, and R. Tjian. 1987. A cellular DNA-binding protein that activates eukaryotic transcription and DNA replication. Cell 48:79–89.
  • Karpen, S., R. Banerjee, A. Zelent, P. Price, and G. Acs. 1988. Identification of protein-binding sites in the hepatitis B virus enhancer and core promoter domains. Mol. Cell. Biol. 8:5159–5165.
  • Knowles, B. B., C. C. Howe, and D. P. Aden. 1980. Human hepatocellular carcinoma cell lines secrete the major plasma proteins and hepatitis B surface antigen. Science 209:497–499.
  • Lenardo, M., J. W. Pierce, and D. Baltimore. 1987. Protein-binding sites in Ig gene enhancers determine transcriptional activity and inducibility. Science 236:1573–1577.
  • Lichtstein, S., J. Wuarin, and U. Schibler. 1987. The interplay of DNA binding proteins on the promoter of the mouse albumin gene. Cell 51:963–973.
  • Mason, J. O., G. T. Williams, and M. S. Neuberger. 1985. Transcription cell type specificity is conferred by a immunoglobulin Vh gene promoter that includes a functional consensus sequence. Cell 41:479–487.
  • Maxam, A., and W. Gilbert. 1980. Sequencing end-labeled DNA with base specific chemical cleavages. Methods Enzymol. 65:499–560.
  • McKnight, S. L.. 1980. The nucleotide sequence and transcript map of the herpes simplex virus thymidine kinase gene. Nucleic Acids Res. 8:5949–5964.
  • McKnight, S., and R. Tjian. 1986. Transcriptional selectivity of viral genes in mammalian cells. Cell 46:795–805.
  • Monaci, P., A. Nicosia, and R. Cortese. 1988. Two different liver-specific factors stimulate in vitro transcription from the human α1-antitrypsin promoter. EMBO J. 7:2075–2087.
  • Ohlsson, H., and T. Edlund. 1986. Sequence-specific interactions of nuclear factors with the insulin gene enhancer. Cell 45:35–44.
  • Queen, C., and D. Baltimore. 1983. Immunoglobulin gene transcription is activated by downstream sequence elements. Cell 33:741–748.
  • Ryffel, G. U., W. Kugler, U. Wagner, and M. Kaling. 1988. Liver cell specific gene 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.
  • Sanger, F., S. Nicklen, and A. R. Coulson. 1977. DNA sequencing with chain-terminating inhibitors. Proc. Natl. Acad. Sci. USA 75:5463–5467.
  • Sawadaishi, K., T. Morinaga, and T. Tamaoki. 1988. Interaction of a hepatoma-specific nuclear factor with transcription-regulatory sequences of the human α-fetoprotein and albumin genes. Mol. Cell. Biol. 8:5179–5187.
  • Scherrer, K.. 1969. Isolation and sucrose gradient analysis of RNA, p. 413–432. In K. Habel, and N. P. Saltzman (ed.), Fundamental techniques in virology. Academic Press, Inc., New York.
  • Scott, R. W., and S. M. Tughman. 1983. Transient expression of a mouse α-fetoprotein minigene: deletion analysis of promoter function. Mol. Cell. Biol. 3:1295–1309.
  • Sen, R., and D. Baltimore. 1986. Multiple nuclear factors interact with the immunoglobulin enhancer sequences. Cell 46:705–716.
  • Shaul, Y., and R. Ben-Levy. 1987. Multiple nuclear proteins in liver cells are bound to hepatitis B virus enhancer element and its upstream sequences. EMBO J. 6:1913–1920.
  • Singh, H., R. Sen, D. Baltimore, and P. A. Sharp. 1986. A nuclear factor that binds to a conserved sequence motif in transcriptional control elements of immunoglobulin genes. Nature (London) 9:154–158.
  • Southern, E. M.. 1975. Detection of specific sequences among DNA fragments separated by gel electrophoresis. J. Mol. Biol. 98:503–517.
  • Thomas, P. S.. 1980. Hybridization of denatured RNA and small DNA fragments transferred to nitrocellulose. Proc. Natl. Acad. Sci. USA 77:5201–5205.
  • Tughman, S. M., and A. Belayew. 1982. Transcriptional control of the murine albumin/a-fetoprotein locus during development. Proc. Natl. Acad. Sci. USA 79:5254–5257.
  • Wahl, G. M., M. Stern, and G. R. Stark. 1979. Efficient transfer of large DNA fragments from agarose gels to diazobenzylor-methyl-paper and rapid hybridization by using dextran sulfate. Proc. Natl. Acad. Sci. USA 76:3683–3687.
  • Wall, L., E. deBoer, and F. Grosveld. 1988. The human β-globin gene 3′ enhancer contains multiple binding sites for an ery-throid-specific protein. Genes Dev. 2:1089–1100.
  • Wirth, T., and D. Baltimore. 1988. Nuclear factor NF-kB can interact functionally with its cognate binding site to provide lymphoid-specific promoter function. EMBO J. 7:3109–3113.
  • Zoller, M. J., and M. Smith. 1984. Oligonucleotide-directed mutagenesis: a simple method using two oligonucleotide primers and a single stranded DNA template. DNA 6:479–488.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.