Search Results - "Carlsen, Jens"

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  1. 1

    Insulin Stimulated Glycogen Synthesis in Isolated Rat Hepatocytes: Effect of Protein Kinase Inhibitors by Carlsen, Jens, Christiansen, Kirsten, Vinten, Jørgen

    Published in Cellular signalling (01-09-1997)
    “…Glycogen synthesis was studied in rat hepatocytes isolated by EDTA perfusion. Insulin induced a one and a half to twofold increase in glucose incorporation…”
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    Mineral Oil-induced Sclerosing Lipogranuloma of the Penis by Bjurlin, Marc A, Carlsen, Jens, Grevious, Mark, Jordan, Michael D, Taylor, Aisha, Divakaruni, Naveen, Hollowell, Courtney M P

    “…Sclerosing lipogranuloma of the penis results from injection of high viscosity fluid for the purpose of penile augmentation and may have devastating cosmetic…”
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    Involvement of PI 3-Kinase and Activated ERK in Facilitating Insulin-Stimulated Triacylglycerol Synthesis in Hepatocytes by Carlsen, Jens, Christiansen, Kirsten, Grunnet, Niels, Vinten, Jørgen

    Published in Cellular signalling (01-10-1999)
    “…Triacylglycerol synthesis was studied in hepatocytes isolated from fasted/refed rats by EDTA perfusion. Insulin induced a 1.5-fold increase in glucose…”
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    Insertion of functional intact insulin receptors into hepatocytes by Christiansen, Kirsten, Carlsen, Jens

    Published in Cellular signalling (01-08-1995)
    “…Isolated insulin receptors were inserted into hepatocytes by fusion with receptor-lysophospholipid micelles. The number of receptors was increased…”
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    The subcellular localization of newly synthesized cytochrome b5 by Carlsen, J, Christiansen, K

    Published in Cell biology international (01-09-1995)
    “…The fate of newly synthesized cytochrome b5 was studied in rat hepatocytes. Using an antibody specific for microsomal cytochrome b5, we found newly synthesized…”
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    A Model for the Quaternary Structure of Human Placental Insulin Receptor Deduced from Electron Microscopy by Christiansen, Kirsten, Tranum-Jensen, Jorgen, Carlsen, Jens, Vinten, Jorgen

    “…Electrophorectically pure and functionally intact human placental insulin receptor was studied by electron microscopy with negative-staining technique. The…”
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    Mouse liver cytidine-5'-monophosphate-N-acetylneuraminic acid hydroxylase : catalytic function and regulation by SHAW, L, SCHNECKENBURGER, P, CARLSEN, J, CHRISTIANSEN, K, SCHAUER, R

    Published in European journal of biochemistry (15-05-1992)
    “…In this paper, we present the results of an investigation into the catalytic properties of CMP-Neu5Ac hydroxylase (Neu5Ac: N-acetylneuraminic acid) in…”
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    Incorporation of cytochrome b5 into endoplasmic reticulum vesicles as protein-lysophospholipid micelles by Christiansen, K, Carlsen, J

    Published in Biochimica et biophysica acta (11-09-1986)
    “…Cytochrome b5 is incorporated into vesicles of the endoplasmic reticulum as protein-lysophosphatidylcholine micelles. Cytochrome b5 becomes firmly bound to the…”
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  9. 9

    Reconstitution of cytochrome b5 into lipid vesicles in a form which is nonsusceptible to attack by carboxypeptidase Y by Christiansen, K, Carlsen, J

    Published in Biochimica et biophysica acta (14-05-1985)
    “…Pig liver cytochrome b5 is reconstituted into lipid vesicles by a method whereby cytochrome b5-lysophospholipid micelles are fused with liposomes. The…”
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    Reconstitution of a protein into lipid vesicles using natural detergents by Christiansen, K, Carlsen, J

    Published in Biochimica et biophysica acta (09-11-1983)
    “…A method is described for reconstitution of a protein into lipid vesicles using one of the natural detergents lysophosphatidylcholine or lysophosphatidic acid…”
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    Use of carboxypeptidase Y in studies of the mode of insertion of cytochrome b5 into lipid vesicles by Carlsen, J, Christiansen, K

    Published in Analytical biochemistry (01-08-1985)
    “…Carboxypeptidase Y preparations from baker's yeast have been found to exhibit endopeptidase activity when cytochrome b5 was used as substrate. As the…”
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  12. 12

    CMP-N-acetylneuraminic acid hydroxylase from mouse liver and pig submandibular glands : interaction with membrane-bound and soluble cytochrome b5-dependent electron transport chains by LEE SHAW, SCHNECKENBURGER, P, SCHLENZKA, W, CARLSEN, J, CHRISTIANSEN, K, JÜRGENSEN, D, SCHAUER, R

    Published in European journal of biochemistry (01-02-1994)
    “…In this report, the nature of the protein components involved in the functioning of cytidine-5'-monophosphate-N-acetylneuraminic acid (CMP-Neu5 Ac) hydroxylase…”
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  13. 13

    Mouse liver cytidine‐5′‐monophosphate‐N‐acetylneuraminic acid hydroxylase by SHAW, Lee, SCHNECKENBURGER, Petra, CARLSEN, Jens, CHRISTIANSEN, Kirsten, SCHAUER, Roland

    Published in European journal of biochemistry (01-05-1992)
    “…In this paper, we present the results of an investigation into the catalytic properties of CMP‐Neu5Ac hydroxylase (Neu5Ac: N‐acetylneuraminic acid) in…”
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    Journal Article
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    CMP‐N‐acetylneuraminic acid hydroxylase from mouse liver and pig submandibular glands by SHAW, Lee, SCHNECKENBURGER, Petra, SCHLENZKA, Wiebke, CARLSEN, Jens, CHRISTIANSEN, Kirsten, JÜRGENSEN, Dorthe, SCHAUER, Roland

    Published in European journal of biochemistry (01-02-1994)
    “…In this report, the nature of the protein components involved in the functioning of cytidine‐5′‐monophosphate‐N‐acetylneuraminic acid (CMP‐Neu5 Ac) hydroxylase…”
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    Purification of microvillus membrane vesicles from pig small intestine by immunoadsorbent chromatography by Carlsen, J, Christiansen, K, Bro, B

    Published in Biochimica et biophysica acta (14-07-1982)
    “…Microvillus membrane vesicles from pig small intestine, isolated by hypotonic lysis, Mg2+ aggregation of contaminants and differential centrifugation, have…”
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    A procedure for removal of interfering phospholipids in the separation and analysis of proteins by Christiansen, K, Demant, E J, Carlsen, J

    Published in Analytical biochemistry (15-02-1985)
    “…A procedure for removal of phospholipids from aqueous samples is described. It is simple and rapid and can be used generally in cases where phospholipids…”
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