Chem. abstr. 114:102464, abstr disclosing RN112549-20-9, 1990.* |
Chem. abstr. and compounds, Eriksson et al., 114:226272, 1990, No date.* |
Chem. abstr. and compounds, Effenberger et al., 114:102462, 1990, No date.* |
Chem. abstr. and compounds, Oyler et al., 113:152778, 1989, No date.* |
Chem. abstr. and compounds, Albeck et al., 112:134675, 1989, No date.* |
Chem. abstr. and compounds, Maier et al., 111:123011, 1989, No date.* |
Chem. abstr. and compounds, Solladie et al., 110:231917, 1989, No date.* |
Chem. abstr. and compounds, Drachev et al., 110:208013, 1989, No date.* |
Chem. abstr and compounds, Renk et al., 110:53155, 1989, No date.* |
Chem. abstr. and compounds, Derguini et al.(A), 101:85900, 1984, No date.* |
Chem. abstr and compounds, Derguini et al (B), 98:67370, 1983, No date.* |
Chem. abstr. and compounds, Bassov et al., 104:6051, 1985, No date.* |
Chem. abstr. and compounds, Liu et al., 99:38676, 1983, No date.* |
Chem. abstr. and compounds, Hanessian et al., 108:37454, 1987, No date.* |
Chem abstr. and compounds, Munenstedt et al., 108:94813, 1987, No date.* |
Chem. abstrs and compounds of the US Pat. listed supra.* |
Heyman et al, Cell, vol. 68, pp. 397-406, 1992, No date.* |
Chemical Abstract of WO 8805653, 1988, No date.* |
Chemical Abstract of article, Preparation of the 9-cis-, 13-cis-, and all trans isomers of .alpha.-and .beta. 2-retinal., Org. Perp. Proced. Int., 19(2-3), 187-95, 1987, No date.* |
Akita et al., “Nonbleachable Rhodopsins Retaining the Full Natural Chromophore,” Journal of the American Chemical Society vol. 102:6370-6372 (1980). |
Asato et al., “Retinal and Rhodopsin Analogues Directed toward a Better Understanding of the H.T.-n Model of the Primary Process of Vision,” Journal of the American Chemical Society vol. 108:5032-5033 (1986). |
Oro et al., “Relationship between the product of the Drosophila ultraspiracle locus and the vertebrate retinoid X receptor,” Nature vol. 347:298-301 (1990). |
Ladias and Karathanasis, “Regulation of the Apolipoprotein AI Gene by ARP-1, a Novel Member of the Steroid Receptor Superfamily,” Science vol. 251:561-565 (1991). |
Mlodzik et al., “The Drosophila seven-up Gene, a Member of the Steroid Receptor Gene Superfamily, Controls Photoreceptor Cell Fates,” Cell vol. 60:211-224 (1990). |
Wang et al., COUP transcription factor is a member of the steroid receptor superfamily, Nature vol. 340:163-166 (1989). |
Miyajima et al., “Identification of two novel members of erbA superfamily by molecular cloning: the gene products of the two are highly related to each other,” Nucleic Acids Research vol. 16:11057-11074 (1988). |
Sladek et al., “Liver-enriched transcription factor HNF-4 is a novel member of the steroid hormone receptor superfamily,” Genes & Development vol. 4:2353-2365 (1990). |
Hamada et al., “H-2RIIBP, a member of the nuclear receptor superfamily that binds to both the regulatory element of major histocompatibility class I genes and the estrogen response element,” Proc. Natl. Acad. Sci. USA vol. 86:8289-8293 (1989). |
Mangelsdorf et al., “A Direct Repeat in the Cellular Retinol-Binding Protein Type II Gene Confers Differential Regulation by RXR and RAR,” Cell vol. 66:555-561 (1991). |
Umesono et al., “Direct Repeats as Selective Response Elements for the Thyroid Hormone, Retinoic Acid, and Vitamin D3 Receptors”, Cell vol. 65:1255-1266 (1991). |
Pike et al., “Serum and Monoclonal Antibodies against the Chick Intestinal Receptor for 1,25-Dihydroxyvitamin D3,” The Journal of Biological Chemistry vol. 258:1289-1296 (1983). |
Pike and Haussler, “Purification of chicken intestinal receptor for 1,25-dihydroxyvitamin D,” Proc. Natl. Acad. Sci. USA vol. 76:5485-5489 (1979). |
Rottman et al., “A Retinoic Acid-Responsive Element in the Apolipoprotein AI Gene Distinguishes between Two Different Retinoic Acid Response Pathways,” Molecular and Cellular Biology vol. 11:3814-3820 (1991). |
Hollenberg and Evans, “Multiple and Cooperative Trans-Activation Domains of the Human Glucocorticoid Receptor,” Cell vol. 55:899-906 (1988). |
Ishikawa et al., “A Functional Retinoic Acid Receptor Encoded by the Gene on Human Chromosome 12,” Molecular Endocrinology vol. 4:837-844 (1990). |
Giguere et al., “Identification of a receptor for the morphogen retinoic acid,” Nature vol. 330:624-629 (1987). |
Umesono and Evans, “Determinants of Target Gene Specificity for Steroid/Thyroid Hormone Receptors,” Cell vol. 57:1139-1146 (1989). |
Thaller and Eichele, “Identification and spatial distribution of retinoids in the developing chick limb bud,” Nature vol. 327:625-628 (1987). |
Corey and Ganem, “New Methods for the Oxidation of Aldehydes to Carboxylic Acids and Esters,” Journal of the American Chemical Society vol. 90:5616-5617 (1968). |