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H M Baddams

Publications and source records attributed to H M Baddams.

3 recordsLinked to original sources

Two distinct mechanisms for regulation of gamma-glutamyl transpeptidase in cultured rat hepatocytes by glucocorticoid-like steroids.

Adult rat hepatocytes maintained in primary monolayer culture with defined medium were used to characterise two effects of glucocorticoid-like steroids in regulating gamma-glutamyltranspeptidase (GGT). Low concentrations of glucocorticoids alone had little effect on GGT but synergistically enhanced induction of the enzyme by liver tumor-promoting xenobiotics such as 1,1,1-trichloro-2,2-bis-(4-chlorophenyl)-ethane (DDT) and hexachlorocyclohexane. The enhancing effect appears to be mediated by the classical glucocorticoid hormone receptor since structural requirements and concentration-dependence for enhancement were similar to those for induction of tyrosine aminotransferase in parallel cultures. Higher concentrations (1-100 microM) of various glucocorticoids alone increased GGT activity. Most glucocorticoids induced GGT but their order of potency did not parallel that for induction of tyrosine aminotransferase under similar culture conditions. Among the most potent glucocorticoids, triamcinolone was a weak GGT inducer and cortivazol appeared to act as an antagonist of GGT induction by steroids. Some non-glucocorticoids including pregnenolone 16 alpha-carbonitrile, and some progestins, also induced but required addition of 30 nM dexamethasone for maximal effect. Some specific steroid structural features were identified which increased (presence of a 16 alpha methyl group) or impaired GGT-inducing activity. Although interpretation is complicated by differential metabolism of individual steroids in culture, the results suggest that GGT induction by pharmacological levels of steroids may be mediated, directly or indirectly, by one or more relatively specific receptors distinct from the classical glucocorticoid receptor.

Animals

Modulation of gamma-glutamyltranspeptidase in normal rat hepatocytes in culture by cell density, epidermal growth factor and agents which alter cell differentiation.

To help clarify whether elevation of gamma-glutamyltranspeptidase (GGT) in hepatocytes is associated with particular pattern(s) of liver differentiation, adult rat hepatocytes in primary culture were maintained for up to 5 days under conditions considered to alter differentiation in liver or other cells: basal GGT activity in untreated cultures and inducibility of the enzyme by known inducers such as dexamethasone, p,p'-dichlorodiphenyltrichloroethane or pregnenolone 16 alpha-carbonitrile were measured. Basal and induced GGT activities were maximal in confluent cultures and declined with decreasing cell density, an effect probably mediated by cell contact rather than factors in the culture medium. Opposite effects of cell density on GGT and DNA synthesis suggest that increased GGT activity is not linked with growth. Epidermal growth factor (EGF) increased basal GGT and augmented the action of xenobiotic inducers in lower density cultures, giving GGT activities approaching the levels in confluent cells. EGF had no effect on confluent cultures. Activators of protein kinase C such as tetradecanoyl phorbol acetate had significant but small inducing effects on GGT. Agents including all-trans retinoic acid, butyrate and dimethylsulfoxide which are considered to favour terminal differentiation in many cell types, all partly blocked induction of GGT by dexamethasone, EGF or xenobiotics. The results are consistent with (but do not prove) the view that elevated GGT activity may be associated with liver phenotype(s) distinct from terminal differentiation but not necessarily linked with growth.

Animals

Evidence that glucagon acts on the liver to decrease mitochondrial calcium stores.

1. Mitochondria isolated from rats treated with glucagon for 60 min or lives perfused in the presence of glucagon for 10 min exhibited lower rates of 45Ca2+ exchange than did control mitochondria when this was measured under steady-state conditions in the presence of Mg2+, ATP, Pi and 0.13 microM- or 0.16 microM-free Ca2+ at pH 7.4 and at 25 degrees C or 37 degrees C. Under these conditions no significant difference in the rates of Ruthenium Red-induced 45Ca2+ efflux was observed. These results contrast with earlier work in which mitochondria isolated from glucagon-treated livers were shown to exhibit faster rates of Ca2+ uptake [Yamazaki (1975) J. Biol. Chem. 250, 7924-7930] and slower rates of spontaneous Ca2+ efflux [Hughes & Barritt (1978) Biochem. J. 176, 295-304] when these parameters were measured under different incubation conditions, including supra-physiological concentrations of free Ca2+ and the absence of added Mg2+ and ATP. 2. Perfusion of livers with glucagon before the addition of adrenaline or the Ca2+-selective ionophore A23187, to release Ca2+ from intracellular stores, decreased the amount of Ca2+ released by these agents. 3. Incubation of isolated hepatocytes in the presence of glucagon at 1.3 mM extracellular Ca2+ induced a small decrease in the plateau of the 45Ca2+-exchange curve obtained under steady-state conditions. 4. It is concluded that the actions of glucagon on liver mitochondrial Ca2+ transporters lead to a decrease, rather than an increase, in mitochondrial Ca2+ stores in the intact cell.

Adenosine Triphosphate