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Summary Anatomy Item Literature (10397) Expression Attributions Wiki
XB-ANAT-111

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Segregation of fate during cleavage of frog (Xenopus laevis) blastomeres., Moody SA., Anat Embryol (Berl). January 1, 1990; 182 (4): 347-62.


Analysis of frequency of intermingling between labeled clones in Xenopus embryos., Sheard P., Ann N Y Acad Sci. January 1, 1990; 599 141-57.


Developmental expression of regionally specific cell surface antigens in the Xenopus gastrula., Litvin J., Dev Genet. January 1, 1990; 11 (1): 110-22.


How does a nervous system produce behaviour? A case study in neurobiology., Roberts A., Sci Prog. January 1, 1990; 74 (293 Pt 1): 31-51.


Fibrillarin and U3 RNA expression during Xenopus oogenesis and embryo development., Caizergues-Ferrer M., Mol Biol Rep. January 1, 1990; 14 (2-3): 107-8.


Mesoderm-inducing factor from bovine amniotic fluid: purification and N-terminal amino acid sequence determination., Chertov OYu., Biomed Sci. January 1, 1990; 1 (5): 499-506.


Cadherin subclasses: differential expression and their roles in neural morphogenesis., Takeichi M., Cold Spring Harb Symp Quant Biol. January 1, 1990; 55 319-25.


Localization of endogenous galactoside-binding lectin during morphogenesis of Xenopus laevis., Milos NC., Anat Embryol (Berl). January 1, 1990; 182 (4): 319-27.


The changing distribution of neurons in the inner nuclear layer from metamorphosis to adult: a morphometric analysis of the anuran retina., Zhu BS., Anat Embryol (Berl). January 1, 1990; 181 (6): 585-94.


Histones in Xenopus laevis' early development: the race against time., Koster JG., Biomed Biochim Acta. January 1, 1990; 49 (8-9): 855-77.


Signal transduction during mesoderm induction in Xenopus., Whitman M., J Reprod Fertil Suppl. January 1, 1990; 42 249-54.


Analysis of the mechanism of isoniazid-induced developmental toxicity with frog embryo teratogenesis assay: Xenopus (FETAX)., Fort DJ., Teratog Carcinog Mutagen. January 1, 1990; 10 (6): 463-76.


[Homeotic genes]., Lepesant JA., Reprod Nutr Dev. January 1, 1990; Suppl 1 9s-26s.


Growth factors as inducing agents in early Xenopus development., Slack JM., J Cell Sci Suppl. January 1, 1990; 13 119-30.


Further validation of FETAX: evaluation of the developmental toxicity of five known mammalian teratogens and non-teratogens., Bantle JA., Drug Chem Toxicol. January 1, 1990; 13 (4): 267-82.


Origin and distribution of enteric neurones in Xenopus., Epperlein HH., Anat Embryol (Berl). January 1, 1990; 182 (1): 53-67.


Molecular approach to dorsoanterior development in Xenopus laevis., Sato SM., Dev Biol. January 1, 1990; 137 (1): 135-41.          


Identification of a novel transforming growth factor-beta (TGF-beta 5) mRNA in Xenopus laevis., Kondaiah P., J Biol Chem. January 15, 1990; 265 (2): 1089-93.      


Physicochemical characterization of progressive changes in the Xenopus laevis egg envelope following oviductal transport and fertilization., Bakos MA., Biochemistry. January 23, 1990; 29 (3): 609-15.


A two-step model for the localization of maternal mRNA in Xenopus oocytes: involvement of microtubules and microfilaments in the translocation and anchoring of Vg1 mRNA., Yisraeli JK., Development. February 1, 1990; 108 (2): 289-98.              


Mesoderm induction and the control of gastrulation in Xenopus laevis: the roles of fibronectin and integrins., Smith JC., Development. February 1, 1990; 108 (2): 229-38.


Appearance and distribution of laminin during development of Xenopus laevis., Fey J., Differentiation. February 1, 1990; 42 (3): 144-52.            


Evolution of insulin-like growth factor I (IGF-I): structure and expression of an IGF-I precursor from Xenopus laevis., Kajimoto Y., Mol Endocrinol. February 1, 1990; 4 (2): 217-26.


The 5' untranslated region of mRNA for ribosomal protein S19 is involved in its translational regulation during Xenopus development., Mariottini P., Mol Cell Biol. February 1, 1990; 10 (2): 816-22.


Circadian regulation of melatonin in the retina of Xenopus laevis: limitation by serotonin availability., Cahill GM., J Neurochem. February 1, 1990; 54 (2): 716-9.


Axial patterning and the establishment of polarity in the frog embryo., Ruiz i Altaba A., Trends Genet. February 1, 1990; 6 (2): 57-64.


Distribution of integrins and their ligands in the trunk of Xenopus laevis during neural crest cell migration., Krotoski D., J Exp Zool. February 1, 1990; 253 (2): 139-50.


Effect of microinjection of a low-Mr human placenta protein tyrosine phosphatase on induction of meiotic cell division in Xenopus oocytes., Tonks NK., Mol Cell Biol. February 1, 1990; 10 (2): 458-63.


Potential for two isoforms of the A1 ribonucleoprotein in Xenopus laevis., Kay BK., Proc Natl Acad Sci U S A. February 1, 1990; 87 (4): 1367-71.


Talin and vinculin in the oocytes, eggs, and early embryos of Xenopus laevis: a developmentally regulated change in distribution., Evans JP., Dev Biol. February 1, 1990; 137 (2): 403-13.              


Protein kinase C acts downstream of calcium at entry into the first mitotic interphase of Xenopus laevis., Bement WM., Cell Regul. February 1, 1990; 1 (3): 315-26.


Lipofection of cDNAs in the embryonic vertebrate central nervous system., Holt CE., Neuron. February 1, 1990; 4 (2): 203-14.


Differential keratin gene expression during the differentiation of the cement gland of Xenopus laevis., LaFlamme SE., Dev Biol. February 1, 1990; 137 (2): 414-8.        


Ultrastructure of the crossed isthmotectal projection in Xenopus frogs., Udin SB., J Comp Neurol. February 8, 1990; 292 (2): 246-54.


Expression pattern of the mouse T gene and its role in mesoderm formation., Wilkinson DG., Nature. February 15, 1990; 343 (6259): 657-9.


The role of the dorsal lip in the induction of heart mesoderm in Xenopus laevis., Sater AK., Development. March 1, 1990; 108 (3): 461-70.


How embryos work: a comparative view of diverse modes of cell fate specification., Davidson EH., Development. March 1, 1990; 108 (3): 365-89.


Cdc2 H1 kinase is negatively regulated by a type 2A phosphatase in the Xenopus early embryonic cell cycle: evidence from the effects of okadaic acid., Félix MA., EMBO J. March 1, 1990; 9 (3): 675-83.


Differential regulation of the levels of three gap junction mRNAs in Xenopus embryos., Gimlich RL., J Cell Biol. March 1, 1990; 110 (3): 597-605.


Genes and mechanisms involved in early embryonic development in Xenopus laevis., Méchali M., Int J Dev Biol. March 1, 1990; 34 (1): 51-9.


XK endo B is preferentially expressed in several induced embryonic tissues during the development of Xenopus laevis., LaFlamme SE., Differentiation. March 1, 1990; 43 (1): 1-9.          


Fibronectin-rich fibrillar extracellular matrix controls cell migration during amphibian gastrulation., Boucaut JC., Int J Dev Biol. March 1, 1990; 34 (1): 139-47.              


Mesodermal induction in early amphibian embryos by activin A (erythroid differentiation factor)., Asashima M., Rouxs Arch Dev Biol. March 1, 1990; 198 (6): 330-335.


Expression of exogenously introduced bacterial chloramphenicol acetyltransferase genes in Xenopus laevis embryos before the midblastula transition., Shiokawa K., Rouxs Arch Dev Biol. March 1, 1990; 198 (6): 322-329.


Mesoderm induction by fibroblast growth factor in early Xenopus development., Slack JM., Philos Trans R Soc Lond B Biol Sci. March 12, 1990; 327 (1239): 75-84.


Mapping of the presumptive brain regions in the neural plate of Xenopus laevis., Eagleson GW., J Neurobiol. April 1, 1990; 21 (3): 427-40.


The effects of N-cadherin misexpression on morphogenesis in Xenopus embryos., Detrick RJ., Neuron. April 1, 1990; 4 (4): 493-506.


Effects of cell heterogeneity on production of polypeptide growth factors and mesoderm-inducing activity by Xenopus laevis XTC cells., Snoek GT., Exp Cell Res. April 1, 1990; 187 (2): 203-10.


Studies on the expression of intracellular and surface polarity in animal pole cells of Xenopus embryos cultured on various substrata., Asada-Kubota M., J Struct Biol. April 1, 1990; 103 (2): 113-23.


Thyroxine-dependent modulations of the expression of the neural cell adhesion molecule N-CAM during Xenopus laevis metamorphosis., Levi G., Development. April 1, 1990; 108 (4): 681-92.                

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