Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UNIPROT:P01275 (glucagon)
26,492 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Brown adipose tissue (BAT) is composed of highly specialized cells, whose main function is to produce heat under adrenergic stimulation, uncoupling oxidative phosphorylation. For this function, lipogenesis must be accurately regulated. Malic enzyme has a central role in lipogenesis and is strongly expressed in brown adipocytes. In this work, we study the modulation by adrenergic stimuli, cAMP effectors and retinoic acid on the induction produced by insulin and 3,5,3'-triiodothyronine on malic-enzyme-gene expression. Primary cultures of differentiating brown adipocytes have been used. The results obtained demonstrate that physiological doses of norepinephrine do not modify malic-enzyme mRNA levels when acting alone, but considerably reduce the induction produced by insulin, 3,5,3'-triiodothyronine or both together. Other cAMP inducers such as glucagon, forskolin or 8-bromo-cAMP, greatly inhibit both, basal and 3,5,3'-triiodothyronine-induced malic-enzyme-gene gene expression. Retinoic acid abolishes basal and also inhibits 3,5,3'-triiodothyronine-induced malic-enzyme-gene expression.
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PMID:Regulation of malic-enzyme-gene expression by cAMP and retinoic acid in differentiating brown adipocytes. 839 90

We assessed the potential role of all-trans-retinoic acid on the developing chick pancreas, specifically with regard to the proportions of insulin cells. The endodermal component of the dorsal pancreatic bud of 5-d-old chick embryos was cultured on Matrigel. Retinoic acid (10(-6) or 10(-5) M) was added to a standard serum-free medium, Ham's F12 containing insulin, transferrin and selenium (F12.ITS). Control grafts were cultured in F12.ITS alone or in F12.ITS with DMSO (the diluent for retinoic acid). After 7 d the explants were retrieved, freeze-dried, vapor-fixed, and embedded in resin. Endocrine cell types were identified by immunocytochemistry. The numbers of insulin cells were expressed as a proportion of the sum of insulin plus glucagon cells. Retinoic acid had a dose-related effect; the proportion of insulin cells in explants treated with the lower dose of retinoic acid (10(-6) M) was more than twice the proportion of insulin cells in explants treated with the higher dose (10(-5) M) of retinoic acid and more than three times that of the control grafts.
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PMID:The effect of retinoic acid on the proportion of insulin cells in the developing chick pancreas. 1069 Oct 36

Both retinoic acid (RA) and transforming growth factor (TGF)-beta1 are known to be influential in the development of insulin cells. Respectively, they increase and decrease the proportion of insulin cells when added to cultures of embryonic chick dorsal pancreatic buds. The aim of this study was to define the action of RA in the presence of decreased levels of TGF-beta1, as are found in growth factor-reduced Matrigel (GFRM), on the proportion of insulin cells. The endodermal component of 5-d chick dorsal pancreatic buds was explanted on to GFRM. Retinoic acid (10(-6) M) was added to Ham's F12 culture medium containing insulin (5 microg/ml), transferrin (5 microg/ml), and selenium (10(-10) M) (F12.ITS). Control explants were cultured in F12.ITS alone or in F12.ITS containing dimethyl sulfoxide (DMSO). After 7 d in culture, insulin and glucagon cells were localized immunocytochemically; changes in numbers of insulin cells were expressed as a percentage of insulin plus glucagon cells. Medium containing RA or DMSO increased the proportion of insulin cells significantly compared with the proportion in the explants cultured in F12.ITS medium alone.
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PMID:Regulation of the proportion of insulin cells in embryonic chick pancreas: effect of a growth factor-reduced extracellular matrix in combination with retinoic acid. 1461 34