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Summary Anatomy Item Literature (2050) Expression Attributions Wiki
XB-ANAT-131

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Activation of vitellogenin gene transcription is a direct response to estrogen in Xenopus laevis liver., Hayward MA., Nucleic Acids Res. December 20, 1982; 10 (24): 8273-84.


5.3 S RNA is a discrete cleavage product from the 5''-terminus of 18 S RNA of rat liver ribosomes., Hamilton MG., Biochim Biophys Acta. December 31, 1982; 699 (3): 297-300.


Synthesis and characterization of a DNA complementary to Xenopus laevis albumin mRNA., Dimitriadis GJ., Mol Cell Biochem. January 1, 1983; 52 (2): 139-44.


Partial purification of estradiol receptor from Xenopus laevis liver and levels of receptor in relation to estradiol concentration., Wright CV., EMBO J. January 1, 1983; 2 (6): 973-7.


Xanthine dehydrogenase activity in the clawed frog, Xenopus laevis., Lyerla TA., Comp Biochem Physiol B. January 1, 1983; 76 (3): 497-502.


Hormonal regulation and expression of vitellogenin multigene family., Tata JR., Ciba Found Symp. January 1, 1983; 98 96-110.


Xenopus mono(adenosine diphosphate ribosyl) transferase: purification, assay, and properties., Godeau F., Princess Takamatsu Symp. January 1, 1983; 13 111-8.


Sequence homologies within the 5' end region of the estrogen-controlled vitellogenin gene in Xenopus and chicken., Walker P., EMBO J. January 1, 1983; 2 (12): 2271-9.


T-lymphocyte and B-lymphocyte dichotomy in anuran amphibians: I. T-lymphocyte proportions, distribution and ontogeny, as measured by E-rosetting, nylon wool adherence, postmetamorphic thymectomy, and non-specific esterase staining., Klempau AE., Dev Comp Immunol. January 1, 1983; 7 (1): 99-110.


Properties of metallothionein induced by zinc, copper and cadmium in the frog, Xenopus laevis., Suzuki KT., Comp Biochem Physiol C Comp Pharmacol Toxicol. January 1, 1983; 75 (1): 33-7.


Induction of metallothionein and effect on essential metals in cadmium-loaded frog Xenopus laevis., Suzuki KT., Comp Biochem Physiol C Comp Pharmacol Toxicol. January 1, 1983; 74 (2): 311-7.


DNA methylation patterns in the 5S DNAs of Xenopus laevis., Sims MA., Nucleic Acids Res. January 25, 1983; 11 (2): 277-90.


Multiple forms of DNA-dependent RNA polymerases in Xenopus laevis. Properties, purification, and subunit structure of class III RNA polymerases., Roeder RG., J Biol Chem. February 10, 1983; 258 (3): 1932-41.


Simultaneous analysis of conformation and transcription of A and B groups of vitellogenin genes in male and female Xenopus during primary and secondary activation by estrogen., Williams JL., Nucleic Acids Res. February 25, 1983; 11 (4): 1151-66.


Xenopus fibrinogen. Characterization of subunits and hormonal regulation of biosynthesis., Wangh LJ., J Biol Chem. April 10, 1983; 258 (7): 4599-605.


The degradation of urate in liver peroxisomes. Association of allantoinase with allantoicase in amphibian liver but not in fish and invertebrate liver., Takada Y., J Biol Chem. April 25, 1983; 258 (8): 4762-4.


Tandemly repeated DNA sequences from Xenopus laevis. II. Dispersed clusters of a 388 base-pair repeating unit., Lam BS., J Mol Biol. April 25, 1983; 165 (4): 587-97.


Tandemly repeated DNA sequences from Xenopus laevis. I. Studies on sequence organization and variation in satellite 1 DNA (741 base-pair repeat)., Lam BS., J Mol Biol. April 25, 1983; 165 (4): 567-85.


Estrogen regulates the absolute rate of transcription of the Xenopus laevis vitellogenin genes., Brock ML., J Biol Chem. May 10, 1983; 258 (9): 5449-55.


Efficient recovery of functionally intact mRNA from agarose gels via transfer to an ion-exchange membrane., Holland LJ., Nucleic Acids Res. May 25, 1983; 11 (10): 3283-300.


Rapid estrogen metabolism and vitellogenin gene expression in Xenopus hepatocyte cultures., Tenniswood MP., Mol Cell Endocrinol. June 1, 1983; 30 (3): 329-45.


Identification and characterization of estrogen-responsive gene products in the liver of rainbow trout., Chen TT., Can J Biochem Cell Biol. July 1, 1983; 61 (7): 802-10.


A calcium-activated nuclease endogenous to Xenopus erythrocytes., Talwar S., FEBS Lett. July 25, 1983; 158 (2): 349-52.


Nuclease sensitivity and DNA methylation in estrogen regulation of Xenopus laevis vitellogenin gene expression., Folger K., J Biol Chem. July 25, 1983; 258 (14): 8908-14.


Estrogen stabilizes vitellogenin mRNA against cytoplasmic degradation., Brock ML., Cell. August 1, 1983; 34 (1): 207-14.


Isolation of cDNA clones for the p33 invariant chain associated with HLA-DR antigens., Long EO., Proc Natl Acad Sci U S A. September 1, 1983; 80 (18): 5714-8.


Enrichment of the poly (A) sequence and lack of enhancement of total RNA synthesis in cultured Xenopus hepatocytes by estradiol-17 beta., Sato K., Cell Struct Funct. September 1, 1983; 8 (3): 223-32.


Alcohol dehydrogenase isozymes in the clawed frog, Xenopus laevis., Wesolowski MH., Biochem Genet. October 1, 1983; 21 (9-10): 1003-17.


Signal sequences, secondary modification and the turnover of miscompartmentalized secretory proteins in Xenopus oocytes., Lane CD., Eur J Biochem. October 17, 1983; 136 (1): 141-6.


Biosynthesis and postsynthetic processing of human C-reactive protein., Tucci A., J Immunol. November 1, 1983; 131 (5): 2416-9.


Selective block of albumin gene expression in chick embryo hepatocytes cultured without hormones and its partial reversal by insulin., Plant PW., J Biol Chem. December 25, 1983; 258 (24): 15355-60.


The nucleotide sequence of mannosyl-Q-containing tRNAAsp from Xenopus laevis oocytes., Haumont E., Biochimie. January 1, 1984; 66 (7-8): 579-82.


Ontogenetic development of L-gulonolactone oxidase activity in several vertebrates., Jenness R., Comp Biochem Physiol B. January 1, 1984; 78 (1): 167-73.


An H1 histone gene from rainbow trout (Salmo gairdnerii)., Mezquita J., J Mol Evol. January 1, 1984; 21 (3): 209-19.


Karyoskeletal proteins and the organization of the amphibian oocyte nucleus., Benavente R., J Cell Sci Suppl. January 1, 1984; 1 161-86.                    


Microsomal monooxygenase system in frog livers., Noshiro M., Comp Biochem Physiol B. January 1, 1984; 77 (4): 761-7.


Adrenergic regulation of glycogenolysis in liver of Xenopus laevis in vitro., Janssens PA., Comp Biochem Physiol C Comp Pharmacol Toxicol. January 1, 1984; 77 (2): 403-8.


Unequal activation by estrogen of individual Xenopus vitellogenin genes during development., Ng WC., Dev Biol. March 1, 1984; 102 (1): 238-47.


Persistence, methylation and expression of vitellogenin gene derivatives after injection into fertilized eggs of Xenopus laevis., Andres AC., Nucleic Acids Res. March 12, 1984; 12 (5): 2283-302.


Xenopus oocytes can synthesise but do not secrete the Z variant of human alpha 1-antitrypsin., Foreman RC., FEBS Lett. March 12, 1984; 168 (1): 84-8.


Xenopus fibrinogen synthesis and secretion. Analysis of precursor polypeptides and their post-translational modification., Holland LJ., J Biol Chem. March 25, 1984; 259 (6): 3757-62.


Compact structure of ribosomal chromatin in Xenopus laevis., Spadafora C., Nucleic Acids Res. March 26, 1984; 12 (6): 2691-704.


Isolation of a mitochondrial DNA topoisomerase from human leukemia cells., Castora FJ., Biochem Biophys Res Commun. May 31, 1984; 121 (1): 77-86.


Stimulation of uridine phosphorylation in primary cultures of Xenopus laevis hepatocytes by estradiol-17 beta., Sato K., Cell Struct Funct. June 1, 1984; 9 (2): 157-65.


Are there major developmentally regulated H4 gene classes in Xenopus?, Woodland HR., Nucleic Acids Res. June 25, 1984; 12 (12): 4939-58.


An enzymatic method for radiolabeling vertebrate vitellogenin., Opresko L., Anal Biochem. August 1, 1984; 140 (2): 372-9.


Injection of partially purified estrogen receptor protein from Xenopus liver nuclei into oocytes activates the silent vitellogenin locus., Knowland J., Proc Natl Acad Sci U S A. September 1, 1984; 81 (18): 5777-81.


Effect of estrogen on Xenopus laevis albumin mRNA levels., Zongza-Dimitriadis V., Mol Cell Biochem. September 1, 1984; 63 (2): 143-8.


A library of monoclonal antibodies to Torpedo cholinergic synaptosomes., Kushner PD., J Neurochem. September 1, 1984; 43 (3): 775-86.


Antibodies to gap-junctional protein selectively disrupt junctional communication in the early amphibian embryo., Warner AE., Nature. September 13, 1984; 311 (5982): 127-31.

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