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Summary Anatomy Item Literature (1640) Expression Attributions Wiki
XB-ANAT-812

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cDNA encoding a 59 kDa homolog of ribosomal protein S6 kinase from rabbit liver., Harmann B., FEBS Lett. October 29, 1990; 273 (1-2): 248-52.


Atlantic salmon (Salmo salar) serum albumin: cDNA sequence, evolution, and tissue expression., Byrnes L., DNA Cell Biol. November 1, 1990; 9 (9): 647-55.


The use of ubiquitin-peptide extensions as protein kinase substrates., Yoo Y., Anal Biochem. November 15, 1990; 191 (1): 35-40.


Molecular cloning by hybrid arrest of translation in Xenopus laevis oocytes. Identification of a cDNA encoding the type I iodothyronine 5'-deiodinase from rat liver., St Germain DL., J Biol Chem. November 25, 1990; 265 (33): 20087-90.


Transcription inhibition of SV40 by in vitro DNA methylation., Götz F., Biochim Biophys Acta. November 30, 1990; 1087 (3): 323-9.


Activation of chromosomal vitellogenin genes in Xenopus oocytes by pure estrogen receptor and independent activation of albumin genes., McKenzie EA., Mol Cell Biol. December 1, 1990; 10 (12): 6674-82.


A nuclear localization signal binding protein in the nucleolus., Meier UT., J Cell Biol. December 1, 1990; 111 (6 Pt 1): 2235-45.


A nervous system-specific isotype of the beta subunit of Na+,K(+)-ATPase expressed during early development of Xenopus laevis., Good PJ., Proc Natl Acad Sci U S A. December 1, 1990; 87 (23): 9088-92.          


Nucleoside diphosphate kinase from Xenopus oocytes; partial purification and characterization., Buczynski G., Biochim Biophys Acta. December 5, 1990; 1041 (3): 296-304.


BAP, a rat liver protein that activates transcription through a promoter element with similarity to the USF/MLTF binding site., Kugler W., Nucleic Acids Res. December 11, 1990; 18 (23): 6943-51.


Isolation and characterization of a cDNA clone for the CCAAT transcription factor EFIA reveals a novel structural motif., Ozer J., J Biol Chem. December 25, 1990; 265 (36): 22143-52.


Xenopsin-related peptide(s) are formed from xenopsin precursor by leukocyte protease(s) and cathepsin D., Carraway RE., Peptides. January 1, 1991; 12 (1): 107-12.


The distribution of E-cadherin during Xenopus laevis development., Levi G., Development. January 1, 1991; 111 (1): 159-69.                


Assessing the efficacy of an Aroclor 1254-induced exogenous metabolic activation system for FETAX., Fort DJ., Drug Chem Toxicol. January 1, 1991; 14 (1-2): 143-60.


A retinoic acid receptor expressed in the early development of Xenopus laevis., Ellinger-Ziegelbauer H., Genes Dev. January 1, 1991; 5 (1): 94-104.              


A monoclonal antibody distinguishes two types of phosphatidylinositol 4-kinase., Endemann GC., Biochem J. January 1, 1991; 273(Pt 1) 63-6.


Variant cDNAs encoding proteins similar to the alpha subunit of chicken CapZ., Cooper JA., Cell Motil Cytoskeleton. January 1, 1991; 18 (3): 204-14.


Liver-specific gene expression: A-activator-binding site, a promoter module present in vitellogenin and acute-phase genes., Kaling M., Mol Cell Biol. January 1, 1991; 11 (1): 93-101.


The effect of clofibrate on amphibian hepatic peroxisomes., Ciolek E., Biol Cell. January 1, 1991; 71 (3): 313-20.


Cellular and subcellular localization of annexin IV in rabbit intestinal epithelium, pancreas and liver., Massey D., Biol Cell. January 1, 1991; 73 (2-3): 151-6.


Expression of rat jejunal cystine carrier in Xenopus oocytes., McNamara PD., J Biol Chem. January 15, 1991; 266 (2): 986-9.


The estrogen-regulated destabilization of Xenopus albumin mRNA is independent of translation., Moskaitis JE., Biochem Biophys Res Commun. January 31, 1991; 174 (2): 825-30.


Type I iodothyronine deiodinase is a selenocysteine-containing enzyme., Berry MJ., Nature. January 31, 1991; 349 (6308): 438-40.


Molecular cloning of cDNA for the B beta subunit of Xenopus fibrinogen, the product of a coordinately-regulated gene family., Bhattacharya A., Mol Cell Endocrinol. February 1, 1991; 75 (2): 111-21.


Expression of a novel cadherin (EP-cadherin) in unfertilized eggs and early Xenopus embryos., Ginsberg D., Development. February 1, 1991; 111 (2): 315-25.                


Insulin and insulin-like-growth-factor-I (IGF-I) receptors in Xenopus laevis oocytes. Comparison with insulin receptors from liver and muscle., Hainaut P., Biochem J. February 1, 1991; 273 ( Pt 3) 673-8.


A liver protein fraction regulating hormone-dependent in vitro transcription from the vitellogenin genes induces their expression in Xenopus oocytes., Corthésy B., Mol Endocrinol. February 1, 1991; 5 (2): 159-69.


Regulation of c-erbA-alpha messenger RNA species in tadpole erythrocytes by thyroid hormone., Schneider MJ., Mol Endocrinol. February 1, 1991; 5 (2): 201-8.


Xenopus liver ferritin H subunit: cDNA sequence and mRNA production in the liver following estrogen treatment., Holland LJ., Biochemistry. February 19, 1991; 30 (7): 1965-72.


Effect of N-linked glycosylation on hepatic lipase activity., Stahnke G., J Lipid Res. March 1, 1991; 32 (3): 477-84.


Hormonal regulation of vitellogenin genes: an estrogen-responsive element in the Xenopus A2 gene and a multihormonal regulatory region in the chicken II gene., Slater EP., Mol Endocrinol. March 1, 1991; 5 (3): 386-96.


Differential expression of two cadherins in Xenopus laevis., Angres B., Development. March 1, 1991; 111 (3): 829-44.                    


Cell cycle control of microtubule-based membrane transport and tubule formation in vitro., Allan VJ., J Cell Biol. April 1, 1991; 113 (2): 347-59.


Coordinate regulation of fibrinogen subunit messenger RNA levels by glucocorticoids in primary cultures of Xenopus liver parenchymal cells., Bhattacharya A., Mol Endocrinol. April 1, 1991; 5 (4): 587-97.


Coordinate estrogen-regulated instability of serum protein-coding messenger RNAs in Xenopus laevis., Pastori RL., Mol Endocrinol. April 1, 1991; 5 (4): 461-8.


Isolation and characterization of a cDNA encoding a chicken beta thyroid hormone receptor., Showers MO., DNA Cell Biol. April 1, 1991; 10 (3): 211-21.


Expression of SPARC/osteonectin in tissues of bony and cartilaginous vertebrates., Ringuette M., Biochem Cell Biol. April 1, 1991; 69 (4): 245-50.


Expression of human glucose transporters in Xenopus oocytes: kinetic characterization and substrate specificities of the erythrocyte, liver, and brain isoforms., Gould GW., Biochemistry. May 28, 1991; 30 (21): 5139-45.


The low density lipoprotein receptor in Xenopus laevis. II. Feedback repression mediated by conserved sterol regulatory element., Mehta KD., J Biol Chem. June 5, 1991; 266 (16): 10415-9.


The nucleotide sequence of rabbit liver transferrin cDNA., Banfield DK., Biochim Biophys Acta. June 13, 1991; 1089 (2): 262-5.


The 165-kDa DNA topoisomerase I from Xenopus laevis oocytes is a tissue-specific variant., Richard RE., Dev Biol. July 1, 1991; 146 (1): 4-11.


p53 mutations in human cancers., Hollstein M., Science. July 5, 1991; 253 (5015): 49-53.


Functional expression of the human formyl peptide receptor in Xenopus oocytes requires a complementary human factor., Murphy PM., J Biol Chem. July 5, 1991; 266 (19): 12560-7.


Developmental and regional expression of thyroid hormone receptor genes during Xenopus metamorphosis., Kawahara A., Development. August 1, 1991; 112 (4): 933-43.            


The switch from larval to adult globin gene expression in Xenopus laevis is mediated by erythroid cells from distinct compartments., Weber R., Development. August 1, 1991; 112 (4): 1021-9.              


Developmental toxicology of potato alkaloids in the frog embryo teratogenesis assay--Xenopus (FETAX)., Friedman M., Food Chem Toxicol. August 1, 1991; 29 (8): 537-47.


Angiotensin receptors from rat liver, brain and pituitary gland. Expression of two subtypes in Xenopus oocytes., Cantau B., Biochem J. August 1, 1991; 277 ( Pt 3) 729-33.


Expression of XBcad, a novel cadherin, during oogenesis and early development of Xenopus., Herzberg F., Mech Dev. August 1, 1991; 35 (1): 33-42.


Purification and characterisation of the insulin-stimulated protein kinase from rabbit skeletal muscle; close similarity to S6 kinase II., Lavoinne A., Eur J Biochem. August 1, 1991; 199 (3): 723-8.


Selenocysteine confers the biochemical properties characteristic of the type I iodothyronine deiodinase., Berry MJ., J Biol Chem. August 5, 1991; 266 (22): 14155-8.

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