3 Retinoic Acid-Regulated Target Genes During Development …
85
Tanay A, Regev A (2017) Scaling single-cell genomics from phenomenology to mechanism. Nature
541:331–338
Taneja R, Rochette-Egly C, Plassat JL, Penna L, Gaub MP, Chambon P (1997) Phosphorylation
of activation functions AF-1 and AF-2 of RAR alpha and RAR gamma is indispensable for
differentiation of F9 cells upon retinoic acid and cAMP treatment. EMBO J 16:6452–6465
Thaller C, Eichele G (1987) Identification and spatial distribution of retinoids in the developing
chick limb bud. Nature 327:625–628
Tickle C, Alberts B, Wolpert L, Lee J (1982) Local application of retinoic acid to the limb bond
mimics the action of the polarizing region. Nature 296:564–566
Ton C, Stamatiou D, Dzau VJ, Liew CC (2002) Construction of a zebrafish cDNA microarray:
gene expression profiling of the zebrafish during development. Biochem Biophys Res Commun
296:1134–1142
Vasios G, Mader S, Gold JD, Leid M, Lutz Y, Gaub MP, Chambon P, Gudas L (1991) The late
retinoic acid induction of laminin B1 gene transcription involves RAR binding to the responsive
element. EMBO J 10:1149–1158
Vasios GW, Gold JD, Petkovich M, Chambon P, Gudas LJ (1989) A retinoic acid-responsive element
is present in the 5’ flanking region of the laminin B1 gene. Proc Natl Acad Sci U S A 86:9099–9103
Wagner DE, Weinreb C, Collins ZM, Briggs JA, Megason SG, Klein AM (2018) Single-cell mapping
of gene expression landscapes and lineage in the zebrafish embryo. Science 360:981–987
Wang SY, Gudas LJ (1988) Protein synthesis inhibitors prevent the induction of laminin B1, collagen
IV (alpha 1), and other differentiation-specific mRNAs by retinoic acid in F9 teratocarcinoma
cells. J Cell Physiol 136:305–311
Warkany J, Schraffenberger E (1946) Congenital malformations induced in rats by maternal vitamin
A deficiency; defects of the eye. Arch Ophthal 35:150–169
Wei Y, Harris T, Childs G (2002) Global gene expression patterns during neural differentiation of
P19 embryonic carcinoma cells. Differentiation 70:204–219
Woo Y, Affourtit J, Daigle S, Viale A, Johnson K, Naggert J, Churchill G (2004) A comparison
of cDNA, oligonucleotide, and Affymetrix GeneChip gene expression microarray platforms. J
Biomol Tech 15:276–284
Zelent A, Krust A, Petkovich M, Kastner P, Chambon P (1989) Cloning of murine alpha and beta
retinoic acid receptors and a novel receptor gamma predominantly expressed in skin. Nature
339:714–717
Zeng W, Mortazavi A (2012) Technical considerations for functional sequencing assays. Nat
Immunol 13:802–807
85
Tanay A, Regev A (2017) Scaling single-cell genomics from phenomenology to mechanism. Nature
541:331–338
Taneja R, Rochette-Egly C, Plassat JL, Penna L, Gaub MP, Chambon P (1997) Phosphorylation
of activation functions AF-1 and AF-2 of RAR alpha and RAR gamma is indispensable for
differentiation of F9 cells upon retinoic acid and cAMP treatment. EMBO J 16:6452–6465
Thaller C, Eichele G (1987) Identification and spatial distribution of retinoids in the developing
chick limb bud. Nature 327:625–628
Tickle C, Alberts B, Wolpert L, Lee J (1982) Local application of retinoic acid to the limb bond
mimics the action of the polarizing region. Nature 296:564–566
Ton C, Stamatiou D, Dzau VJ, Liew CC (2002) Construction of a zebrafish cDNA microarray:
gene expression profiling of the zebrafish during development. Biochem Biophys Res Commun
296:1134–1142
Vasios G, Mader S, Gold JD, Leid M, Lutz Y, Gaub MP, Chambon P, Gudas L (1991) The late
retinoic acid induction of laminin B1 gene transcription involves RAR binding to the responsive
element. EMBO J 10:1149–1158
Vasios GW, Gold JD, Petkovich M, Chambon P, Gudas LJ (1989) A retinoic acid-responsive element
is present in the 5’ flanking region of the laminin B1 gene. Proc Natl Acad Sci U S A 86:9099–9103
Wagner DE, Weinreb C, Collins ZM, Briggs JA, Megason SG, Klein AM (2018) Single-cell mapping
of gene expression landscapes and lineage in the zebrafish embryo. Science 360:981–987
Wang SY, Gudas LJ (1988) Protein synthesis inhibitors prevent the induction of laminin B1, collagen
IV (alpha 1), and other differentiation-specific mRNAs by retinoic acid in F9 teratocarcinoma
cells. J Cell Physiol 136:305–311
Warkany J, Schraffenberger E (1946) Congenital malformations induced in rats by maternal vitamin
A deficiency; defects of the eye. Arch Ophthal 35:150–169
Wei Y, Harris T, Childs G (2002) Global gene expression patterns during neural differentiation of
P19 embryonic carcinoma cells. Differentiation 70:204–219
Woo Y, Affourtit J, Daigle S, Viale A, Johnson K, Naggert J, Churchill G (2004) A comparison
of cDNA, oligonucleotide, and Affymetrix GeneChip gene expression microarray platforms. J
Biomol Tech 15:276–284
Zelent A, Krust A, Petkovich M, Kastner P, Chambon P (1989) Cloning of murine alpha and beta
retinoic acid receptors and a novel receptor gamma predominantly expressed in skin. Nature
339:714–717
Zeng W, Mortazavi A (2012) Technical considerations for functional sequencing assays. Nat
Immunol 13:802–807
