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PUBMED FOR HANDHELDS

Journal Abstract Search


40 related items for PubMed ID: 3019856

  • 1.
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  • 2. Effect of maternal food restriction on circulating insulin and glucagon levels and on liver insulin and glucagon binding sites of fetal and suckling rats.
    Alvarez E, Fernández S, Blázquez E.
    Diabete Metab; 1986 Dec; 12(6):337-45. PubMed ID: 3028880
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  • 3. Binding and action of glucagon in cultured mouse astrocytes.
    Cockram CS, Kum W, Ho SK, Zhu SO, Young JD.
    Glia; 1995 Feb; 13(2):141-6. PubMed ID: 7649616
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  • 4. [Molecular biology of regulation of renal function--structure, function and distribution of the receptor--insulin, glucagon].
    Nagasaka Y, Kaneko T.
    Nihon Rinsho; 1992 Dec; 50(12):2921-4. PubMed ID: 1337116
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  • 6. Insulin binding and degradation in short time incubation at 37 C.
    Cresto JC, Camberos MC, Zúccolo A, Justel E, Basabe JC.
    Acta Physiol Pharmacol Latinoam; 1984 Dec; 34(4):343-54. PubMed ID: 6242261
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  • 7. Receptor-mediated endocytosis of glucagon in isolated mouse hepatocytes.
    Watanabe J, Kanamura S, Asada-Kubota M, Kanai K, Oka M.
    Anat Rec; 1984 Dec; 210(4):557-67. PubMed ID: 6098192
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  • 8.
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  • 10. Glucagon receptor binding, dissociation and degradation in rat liver plasma membranes studied by a microperifusion method.
    Frandsen EK, Bacchus RA.
    Biochim Biophys Acta; 1987 Jun 15; 929(1):74-80. PubMed ID: 3036248
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  • 11. [Insulin receptors-a review (author's transl)].
    Freychet P.
    Diabete Metab; 1975 Mar 15; 1():57-68. PubMed ID: 791721
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  • 12.
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  • 13. Insulin and glucagon degradation by the kidney. II. Characterization of the mechanisms at neutral pH.
    Duckworth WC.
    Biochim Biophys Acta; 1976 Jul 21; 437(2):531-42. PubMed ID: 8106
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  • 14. Quantitative analysis of internalization of glucagon by isolated hepatocytes.
    Horwitz EM, Gurd RS.
    Arch Biochem Biophys; 1988 Dec 21; 267(2):758-69. PubMed ID: 2463785
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  • 15. Characterization of a glucagon receptor-linked protease from canine hepatic plasma membranes. Partial purification, kinetic analysis, and determination of sites for hormone processing.
    Sheetz MJ, Tager HS.
    J Biol Chem; 1988 Dec 15; 263(35):19210-7. PubMed ID: 2848817
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  • 16. Fluorescent glucagon derivatives. II. The use of fluorescent glucagon derivatives for the study of receptor disposition in membranes.
    Ward LD, Cantrill RC, Heithier H, Peters R, Helmreich EJ.
    Biochim Biophys Acta; 1988 Oct 07; 971(3):307-16. PubMed ID: 2844292
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  • 17. Characterization of glucagon receptors in liver membranes and isolated hepatocytes during rat ontogenic development.
    Blázquez E, Perez Castillo A, de Diego JG.
    Mol Cell Endocrinol; 1987 Feb 07; 49(2-3):149-57. PubMed ID: 3030850
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  • 18. Analysis of glucagon-receptor interactions on isolated canine hepatocytes. Formation of reversibly and irreversibly cell-associated hormone.
    Bharucha DB, Tager HS.
    J Biol Chem; 1990 Feb 25; 265(6):3070-9. PubMed ID: 2154469
    [Abstract] [Full Text] [Related]

  • 19. Glucagon degradation by human mononuclear cells.
    Neal GW, Solomon SS, Shankar TP, Duckworth WC.
    Diabetologia; 1983 Nov 25; 25(5):404-10. PubMed ID: 6317504
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  • 20. Insulin degradation by mononuclear cells.
    Powers AC, Solomon SS, Duckworth WC.
    Diabetes; 1980 Jan 25; 29(1):27-32. PubMed ID: 6991313
    [Abstract] [Full Text] [Related]


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