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Biomedical subjects

G A Robison

Publications and source records attributed to G A Robison.

At least 19 recordsLinked to original sources

Insulin inhibition of lipolysis of human adipocytes: the role of cyclic adenosine monophosphate.

To gain information on the manner in which insulin suppresses lipolysis in man, isolated adipocytes, prepared from subcutaneous adipose tissue, were incubated with insulin (100 microunits/ml) alone and in combination with isoproterenol (10(-7) M or 10(-8) M). Cyclic AMP concentration was measured at 60 min; glycerol release, used as an index of lipolysis, was determined at 45 and 75 min. Insulin consistently reduced both basal and stimulated cyclic AMP and glycerol release: the degree of suppression of each was comparable. In subsequent experiments, the ability of insulin to suppress glycerol release stimulated by isoproterenol, theophylline, and dibutyryl cyclic AMP (dbcAMP), respectively, was compared. Insulin substantially reduced the raised levels of cyclic AMP and glycerol release prompted by isoproterenol and theophylline, but it had little effect on increases caused by dbcAMP. These findings support the view that reduction in cyclic AMP is an important component in the regulation of fat mobilization by insulin.

Adipose Tissue

The effect of fasting on the adrenergic receptor activity of human adipocytes.

To assess the influence of fasting of the alpha- and beta-adrenergic receptor activities of human adipocytes, subcutaneous adipose tissue was obtained from normal obese subjects in the fed state and after 3 days of fasting. Isolated cells prepared from the adipose tissue were incubated with epinephrine, 10(-6)M, and in the presence of the alpha-blocker phentolamine, 10(-5)M, and the beta-blocker propranolol, 10(-5)M, respectively; intracellular cyclic AMP levels and glycerol released into the buffer were measured. Consistent with past observations, epinephrine stimulated cyclic AMP and glycerol release when incubated with cells from fed subjects. Phentolamine enhanced this action and propranolol reduced it below the basal level. In contrast, epinephrine suppressed cyclic AMP and lipolysis when incubated with adipocytes from fasted individuals. This reversal in the effect of epinephrine on adipocy.se in alpha-activity. Additional studies suggest that this change in alpha- and beta-adrenergic receptor balance occurred after 1 day of fast and was not significantly exaggerated when fast was prolonged to 8 days. These findings are consistent with the view that in the fasting state the sympathetic nervous system and circulating catecholamines act to conserve adipose tissue triglyceride.

Adipose Tissue

Loss of lymphocyte cyclic AMP dependent protein kinase activity in malignant melanoma.

Cyclic AMP dependent protein kinase activity was depressed in whole thymus and spleen as well as isolated splenic lymphocytes from B16 melanoma bearing C57B1/6J mice as compared to control animals. A similar loss of enzyme activity was observed in human peripheral blood lymphocytes from melanoma bearing patients as compared to normal subjects. An unaltered level of activity in the heart of tumor bearing mice suggested some specificity for the lymphoid system. This depressed enzyme activity was the result of a diminished Vmax for cAMP stimulated calf histone phosphorylation. The tumor bearing state in the mouse was also accompanied by a depletion of small lymphocytes from both thymus and spleen and it is hypothesized that the losses of lymphocytes and cAMP dependent protein kinase activity are related.

Animals

Inhibition of GH1 rat pituitary tumor cell adenylyl cyclase activity by somatostatin.

Somatostatin inhibits basal and chlorpromazine stimulated adenylyl cyclase activity in homogenates of GH1 rat pituitary tumor cells. The Dtryp8-Dcys14 analogue is more potent than tyrosyl somatostatin as an inhibitor of both basal and chlorpromazine-stimulated adenylyl cyclase. Somatostatin had no effect on sodium fluoride or quanylyl-imidodiphosphate-stimulated cyclase in GH1 cell homogenates or on basal, epinephrine or prostaglandin E1 stimulated cyclase activity in sonicated BHK fibroblasts. These results indicate a specific effect of somatostatin to inhibit pituitary adenylyl cyclase activity.

Adenylyl Cyclase Inhibitors

In-vitro observations on isolated adipose tissue cells from hyperobese subjects.

Isolated adipose tissue cells were prepared from subcutaneous samples obtained from nine morbidly obese subjects weighing from 187 to 306% of ideal body weight. The responsiveness of these adipocytes to a number of test substances was determined by measuring cellular cyclic AMP concentration at one-half hour and glycerol release at four hours. Theophylline (10(-3) M) and epinephrine (10(-5) M) stimulated lipolysis; theophylline stimulated an increase in cyclic AMP, while epinephrine failed to prompt a significant change in the nucleotide. Neither the alpha blocker, phentolamine (10(-5) M), nor the beta blocker, propranolol (3 X 10(-5) M), affected lipolysis or cyclic AMP; when these agents were incubated in combination with epinephrine, changes occurred indicative of the presence of both alpha and beta adrenergic receptor sites. Insulin significantly reduced both basal and stimulated lipolysis but failed to affect cyclic AMP. With minor exceptions, adipocytes from hyperobese subjects behaved similarly to cells from unselected donors; at the concentration used, there was no evidence of resistance to insulin.

Adipose Tissue

Sonication as a tool for the study of adenylyl cyclase activity.

The technique of sonication was applied in studying adenylyl cyclase activity of cultured fibroblasts. Exposure of BHK 21 c/13 to brief periods of low power sonication gives cell preparations with greater basal, fluoride and hormone sensitive adenylyl cyclase activites than those of broken cell preparations of homogenized cells. The sonicated cells provide a convenient method to study adenylyl cyclase since they are added directly to the adenylyl cyclase reaction vessels without further processing. Maximal epinephrine stimulated activity in sonicated cells is nearly equivalent to that activated by sodium fluoride, but the apparent affinity of the enzyme system is similar to that of broken cell preparations. Furthermore, broken cell preparations of sonicated cells possess greater adenylyl cyclase activity than broken cell preparations of unsonicated cells. This procedure may provide a useful tool for the analysis of the hormonal regulation of adenylyl cyclase activity of isolated cells.

Adenylyl Cyclases

Cyclic nucleotide phosphodiesterases and thyroid hormones.

Evidence is presented that modulation of the maximum velocity of a particulate low K-m cyclic adenosine 3':5'-monophosphate (cyclic AMP) phosphodiesterase by thyroid hormones is one mechanism for the regulation of the responsiveness of rat epididymal adipocytes to lipolytic agents such as epinephrine and glucagon. Fat cells of propylthiouracil-induced hypothyroid rats are unresponsive to lipolytic agents and the V-max of particulate low K-m cyclic AMP phosphodiesterase of these cells is elevated above normal. In vivo treatment of hypothyroid rats with triiodothyronine restores to control values both the lipolytic response of the fat cells to epinephrine and the V-max of the particulate bound low K-m cyclic AMP phosphodiesterase. No similar correlation is found with the soluble high K-m cyclic AMP phosphodiesterase. The phosphodiesterases of fat cells from normal and hypothyroid rats respond identically in vitro to propylthiouracil, triiodothyronine, methylisobutylxanthine, or theophylline, although the particulate low K-m cyclic AMP phosphodiesterase is inhibited to a greater extent than soluble cyclic guanosine 3':5'-monophosphate phosphodiesterase activity. Protein kinase of fat cells from hypothyroid rats can be stimulated by cyclic AMP to the same total activity as observed in fat cells of normal rats. However, less of the protein kinase in fat cells from hypothyroid rats was in the cyclic AMP-independent form. This shift in the equilibrium of protein kinase forms is consistent with an increased activity of low K-m cyclic AMP phosphodiesterase and probably results from a lowering of the lipolytically significant pool of cyclic AMP.

Adipose Tissue

Site of free-fatty-acid inhibition of lipolysis by human adipocytes.

When human adipocytes were incubated in albumin-free buffer, isoproterenol failed to stimulate an increase in either cyclic AMP or glycerol release. Cells incubated for 1/2 hr with 4% albumin and isoproterenol had a striking increase in cyclic AMP; this effect was markedly reduced when FFA concentration was increased by the addition of sodium oleate. When incubation was prolonged to 4 hr, the cyclic AMP concentration of stimulated cells fell towards the basal level. This decline in the level of cyclic AMP was prevented by frequent change in buffer. The ability of epinephrine and sodium fluoride to stimulate the adenylyl cyclase of human adipocyte membranes was not affected by the addition of sodium oleate. However, when intact cells were preincubated for 1 hr with added sodium oleate, the responsiveness to epinephrine of membranes derived from the cells was reduced. No such alternation in responsiveness to sodium fluoride occurred. These results indicate that the inhibitory effect of FFA on lipolysis is associated with a reduced production of cyclic AMP; the latter effect may be the consequence of FFA inhibition of adenylyl cyclase.

Adenylyl Cyclases

LH and FSH stimulation of cyclic AMP in specific cell types isolated from the testes.

The direct effect of LH and FSH on cyclic AMP levels in specific cell types, isolated from the rat testes, was investigated in vitro. LH significantly stimulated cyclic AMP production in isolated interstitial cells and had only a slight effect on the isolated germ cells. FSH significantly stimulated cyclic AMP production in isolated seminiferous tubules, organ cultures of testes explants, and isolated Sertoli cells, with only a small response elicited in the germ cells. FSH had no effect on the cyclic AMP levels in interstitial cells and either freshly isolated or cultured peritubular cells. These data indicate that the Sertoli cells and interstitial cells are the main cell types in the testes which respond to FSH and LH respectively with increased cyclic AMP production. A possible slight effect of either hormone on the cyclic AMP level in the germ cells has not be ruled out.

Animals