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P Muzzin

Publications and source records attributed to P Muzzin.

49 records · Page 3Linked to original sources

Adipose tissues from various anatomical sites are characterized by different patterns of gene expression and regulation.

We have shown previously the presence of brown adipocytes among white fat pads, and proposed the existence of a spectrum of adipose depots according to the abundance of brown fat cells [Cousin, Cinti, Morroni, Raimbault, Ricquier, Pénicaud and Casteilla (1992) J. Cell Sci. 103, 931-942]. In this study, we tried to characterize this spectrum better. We determined in several adipose depots (i) the richness of pre-adipose cells, as assessed by A2COL6 mRNA levels; (ii) whether a fat pad was characterized by a pattern of mRNA expression; (iii) whether this pattern was close related to abundance of brown adipocytes, and (iv) whether the regulation of this pattern by catecholamines under cold exposure or beta-agonist treatment was similar in the different pads. This was achieved by studying proteins involved in glucose and lipid metabolism such as insulin-sensitive glucose transporter (GLUT4), fatty acid synthase, lipoprotein lipase and fatty acid binding protein aP2, as well as beta 3-adrenergic-receptor expression. Among white adipose depots, the periovarian fat pad was characterized by the highest content of pre-adipocytes and of brown adipocytes, and inguinal fat by the highest lipogenic activity potential. There was no close correlation between beta 3-adrenergic-receptor expression and brown adipocyte content in the tissues, as measured by the degree of uncoupling protein (UCP) gene expression. However, in pads expressing UCP mRNA, mRNA levels of beta 3-adrenergic receptor and other markers were increased in parallel. Under cold exposure or beta 3-agonist treatment, a specific up-regulation of GLUT4 expression was observed in interscapular brown adipose tissue. The regional difference described in this study, could participate in preferential fat-pad growth under physiological conditions as well as in pathological situations.

Adipose Tissue↗

Expression of the beta 3-adrenergic receptor in human white adipose tissue.

The results of this study suggest that the atypical beta-adrenergic receptor (beta 3 subtype) is expressed in human white adipose tissue. A beta 3-adrenergic receptor mRNA could be detected in human omental fat poly(A)+ RNA by polymerase chain reaction amplification with appropriate primers. The expression of the beta 3-adrenergic receptor in human fat was confirmed by Northern blot analysis; however, the level of its mRNA was lower than those of the beta 1- and beta 2-adrenergic receptors. Two populations of ((-)-4-(3-t-butylamino-2-hydroxypropoxy)-[5,7-3H]benzimidazole-2-one) ([3H]CGP 12177)-binding sites were identified in human omental fat membranes, one with a high affinity (Kd = 1.7 nM) and the other with a low affinity (Kd = 22 nM). The low affinity binding site population, which should represent the beta 3-adrenergic receptor, was predominant (75% of the total binding sites).

Adipose Tissue↗

Modulation in vivo of beta-adrenergic-receptor subtypes in rat brown adipose tissue by the thermogenic agonist Ro 16-8714.

The number of beta 3-adrenergic receptors (AR) in plasma membranes from interscapular brown adipose tissue (IBAT) was decreased by 62% in lean Zucker rats treated with the thermogenic beta-adrenergic agonist Ro 16-8714 as compared with controls after 72 h of treatment. The loss of beta 3-AR number was preceded by a 93% decrease in the steady-state level of beta 3-AR mRNA at 30 h. Similar results were obtained in obese (fa/fa) Zucker rats. Ro 16-8714 had no effect on the number of beta 1- and beta 2-ARs in IBAT. This is the first report to demonstrate that the beta 3-AR in IBAT can be specifically down-regulated in vivo by exposure to a thermogenic agonist.

2-Hydroxyphenethylamine↗

Progesterone transcriptionally regulates the beta 2-adrenergic receptor gene in pregnant rat myometrium.

Administration of 5 mg of progesterone to late pregnant rats induced an increase in myometrial beta-adrenergic receptors density detected by 125I-cyanopindolol binding. This increase was significant after 24 h (1.4-fold; p less than 0.05) and reached 1.6-fold (p less than 0.05) after 36 h. The antiprogestin RU 486 or cycloheximide completely suppressed the effect of progesterone injection. Quantification of the beta 1- and beta 2-receptor subtypes revealed that progesterone selectively up-regulated the beta 2-subtype. The increase in beta 2-adrenoreceptors was preceded by an elevation of their mRNA (2.3 kilobases) levels as determined by Northern blot hybridization with a rat heart beta 2-adrenoreceptor cDNA probe. This increase was significant after 18 h of exposure to progesterone (2.1-fold; p less than 0.05) and reached a maximum after 24 h (3.4-fold; p less than 0.01). The rate of beta 2-adrenergic gene transcription evaluated by nuclear run-on transcription assays, increased by 2.5-fold in myometria exposed for 4 h to progesterone. This study indicates that progesterone regulates myometrial beta 2-adrenergic receptor expression by controlling the rate of transcription of the gene.

Animals↗

Radioligand binding studies of the atypical beta 3-adrenergic receptor in rat brown adipose tissue using [3H]CGP 12177.

Two populations of [3H]CGP 12177 binding sites exist in rat interscapular brown adipose tissue (IBAT) plasma membranes. The majority of binding sites are of low affinity with a Kd of 31 nM, a value in close agreement with that for the Kd of [3H]CGP 12177 binding to a cloned rat beta 3-adrenergic receptor (AR) expressed in CHO cells (44 nM). Competition binding studies demonstrate that the Ki values of the cloned rat beta 3-AR and of the low affinity sites in IBAT are 45 and 29 nM, respectively, for BRL 37344 and 1.4 and 1.0 microM, for (-)-propranolol. These findings strongly suggest that the low affinity [3H]CGP 12177 binding site measured in IBAT plasma membranes represents the atypical beta 3-AR in this tissue.

Adipose Tissue, Brown↗

An adipose tissue-specific beta-adrenergic receptor. Molecular cloning and down-regulation in obesity.

Clones encoding an atypical beta-adrenergic receptor were isolated from a rat brown adipose tissue cDNA library. This receptor expressed in Chinese hamster ovary (CHO) cells displays a low affinity for beta-adrenergic antagonists and a high affinity for BRL 37344, an agonist that selectively stimulates lipolysis in adipose tissue. The rank order of potency for agonist-mediated increases in intracellular cAMP in transfected cells correlates with that for agonist-mediated stimulation of lipolysis in brown adipocytes. Northern blot analysis demonstrates that this receptor subtype is expressed only in brown and white adipose tissue where it represents the predominant beta-receptor subtype. The amount of atypical beta-adrenergic receptor present in adipose tissue of obese (fa/fa) Zucker rats is reduced by up to 71% as compared with lean (Fa/Fa) control animals. These findings suggest that a change in the expression of this beta-adrenergic receptor subtype may play a role in obesity.

Adipose Tissue, Brown↗

Changes in beta 1- and beta 2-adrenergic receptor mRNA levels in brown adipose tissue and heart of hypothyroid rats.

The aim of the present work was to study the effect of hypothyroidism on the expression of the beta-adrenergic receptor (beta-AR) in interscapular brown adipose tissue and heart. The total density of plasma membrane beta-AR per tissue is decreased by 44% in hypothyroid rat interscapular brown adipose tissue and by 55% in hypothyroid rat heart compared with euthyroid controls. The effects of hypothyroidism on the density of both beta 1- and beta 2-AR subtypes were also determined in competition displacement experiments. The densities of beta 1- and beta 2-AR per tissue are decreased by 50% and 48% respectively in interscapular brown adipose tissue and by 52% and 54% in the heart. Northern blot analysis of poly(A)+ RNA from hypothyroid rat interscapular brown adipose tissue demonstrated that the levels of beta 1- and beta 2-AR mRNA per tissue are decreased by 73% and 58% respectively, whereas in hypothyroid heart, only the beta 1-AR mRNA is decreased, by 43%. The effect of hypothyroidism on the beta 1-AR mRNA is significantly more marked in the interscapular brown adipose tissue than in the heart. These results indicate that beta-AR mRNA levels are differentially regulated in rat interscapular brown adipose tissue and heart, and suggest that the decrease in beta-AR number in interscapular brown adipose tissue and heart of hypothyroid animals may in part be explained by a decreased steady-state level of beta-AR mRNA.

Adipose Tissue, Brown↗

Effects of a peroxisome proliferator on beta-oxidation and overall energy balance in obese (fa/fa) rats.

The aim of the study was to examine in the obese Zucker (fa/fa) rats the effect of a peroxisome proliferator nafenopin on liver and brown adipose tissue peroxisomal and mitochondrial beta-oxidation enzyme activities and on the overall energy dissipation. A 17-day nafenopin treatment increased liver wet weight 2.1-fold and liver total acyl-CoA oxidase and mitochondria beta-oxidative activities 32- and 4.6-fold, respectively. It increased the interscapular brown adipose tissue (IBAT) acyl-CoA oxidase activity 2.1-fold but had no effect on the mitochondria beta-oxidative activity. Because nafenopin was found to decrease food intake by 22%, obese nafenopin-treated rats were compared with a group of obese pair-fed rats. Both food restriction and nafenopin treatment decreased body weight gain, but a decrease (14%) in fat content was only observed in nafenopin-treated rats. Food restriction of obese rats decreased the mean metabolic rate by 13%, and nafenopin treatment prevented this decrease. Both food restriction and nafenopin treatment decreased the mean daily respiratory quotient (RQ). However, the RQ of nafenopin-treated rats was steadily lower than that of control, whereas that of food-restricted rats was the same as that of control animals during the feeding period and decreased when food supply was exhausted. The increase in liver and IBAT fatty acid beta-oxidative activities may be the cause of the decreased lipid accretion measured in obese rats.

Adipose Tissue↗

Effects of phorbol 12-myristate 13-acetate on triglyceride and cholesteryl ester synthesis in cultured coronary smooth muscle cells and macrophages.

In cultured pig coronary smooth muscle cells phorbol 12-myristate 13-acetate (PMA) stimulated the conversion of [4-14C]cholesterol into cholesteryl esters and the incorporation of [2-3H]glycerol into triglycerides 6.4- and 4.5-fold, respectively. The maximal effects occurred after 3 h of treatment and there was a return to basal values after 72 h. In the presence of 400 microM oleic acid, PMA stimulated the conversion of [4-14C]cholesterol into cholesteryl esters and that of [2-3H]glycerol into triglycerides 5.3- and 2.3-fold, respectively. The stimulatory effects were more sustained (still significant after 72 h) and their maxima were delayed (peaks after 24 h). PMA was also found to increase 2-fold the amount of triglyceride that accumulated in the cells in the presence of oleic acid after 24 h. In macrophages IC-21, the effects of PMA were observed only in the presence of oleic acid. They consisted of a 1.9-fold stimulation in the conversion of [4-14C]cholesterol into cholesteryl esters after 72 h and of a 1.7-fold stimulation in the incorporation of [2-3H]glycerol into triglycerides after 24 h. PMA also increased the amount of triglyceride that accumulated in the cells 1.9-fold after 72 h. It is concluded that PMA, and possibly growth factors, may promote lipid storage in smooth muscle cells and that fatty acids favor long lasting effects of PMA in smooth muscle cells and are necessary for any effect of PMA in macrophages.

Animals↗

The novel thermogenic beta-adrenergic agonist Ro 16-8714 increases the interscapular brown-fat beta-receptor-adenylate cyclase and the uncoupling-protein mRNA level in obese (fa/fa) Zucker rats.

In obese (fa/fa) rats both the total (-)-isoprenaline- and NaF-stimulated adenylate cyclase activities of interscapular brown-adipose-tissue (IBAT) plasma membranes were decreased as compared with lean rats by 40 and 38% respectively. An acute treatment with Ro 16-8714 increased (-)-isoprenaline- and NaF-stimulated adenylate cyclase activities by 2.5- and 2.0-fold respectively, and beta-adrenoceptor number 2.8-fold in obese rat IBAT, but it had no effect on these parameters in lean rats. It increased mRNA for mitochondrial uncoupling protein in both lean and obese rats to the same extent.

2-Hydroxyphenethylamine↗

Peroxisomal oxidative capacity of brown adipose tissue depends on the thyroid status.

The induction of hypothyroidism in rats by methimazole affects interscapular brown adipose tissue (IBAT) mitochondrial and peroxisomal enzyme activities in opposite directions. Hypothyroidism, indeed, decreases both mitochondrial succinate dehydrogenase and beta-oxidation total activities by 35 and 45%, respectively and increases peroxisomal catalase and acyl coenzyme A (acyl CoA) oxidase total activities 3.2- and 1.6-fold, respectively. Administration of a thyroid hormone analogue (3'-isopropyl-3,5-diiodo-L-thyronine) prevents these enzymatic modifications. The effects of hypothyroidism on IBAT mitochondrial enzyme activities seem to be direct, i.e. due to the lack of thyroid hormones, while those on peroxisomal enzyme activities might be indirect, i.e. secondary to the increased thermogenic needs of the rat and mediated by adrenergic stimulation. It is noteworthy that the indirect effects of hypothyroidism on peroxisomes are not observed in liver where acyl CoA oxidase activity is in fact decreased by 40%. In hypothyroid rat IBAT, administration of the peroxisome proliferator nafenopin does not further stimulate the already increased peroxisomal enzyme activities and does not inhibit the already decreased mitochondrial enzyme activities.

Acyl Coenzyme A↗

Discrepancies between the affinities of binding and action of the novel beta-adrenergic agonist BRL 37344 in rat brown adipose tissue.

The novel brown adipose tissue (BAT) selective beta-adrenergic agonist, BRL 37344, is 31-fold more potent than (-)-isoproterenol in stimulating the respiratory rate of interscapular BAT fragments. BRL 37344 is also more potent (9-fold) than (-)-isoproterenol in stimulating adenylate cyclase activity of IBAT purified plasma membranes whereas, in the same preparation, it is 81-fold less potent than (-)-isoproterenol in competition displacement studies with the beta-adrenergic ligand, [125I]cyanopindolol. We have previously demonstrated that the photoaffinity reagent [125I]cyanopindolol-diazirine selectively labels a 62 kDa protein in IBAT plasma membranes that displays pharmacological properties of a beta 1-adrenergic subtype. Relatively high concentrations of BRL 37344 (10 microM) are required to displace [125I]cyanopindolol-diazirine binding to the 62 kDa protein. Taken together, the results suggest that two different populations of beta-adrenergic receptors may co-exist in BAT plasma membranes: a small population (about 15%) of atypical beta-receptors and a large population of beta 1-receptors that exhibit high and low affinities for BRL 37344, respectively.

Adenylyl Cyclases↗

Biochemical characterization of brown adipose tissue beta-adrenergic receptor.

The beta-adrenergic receptor of rodent brown fat plays a key role in the control of energy dissipation by this tissue. The aim of the present study was to further characterize the biochemical properties of this receptor. The beta-receptor of rat interscapular brown adipose tissue plasma membranes was found to bind the beta-adrenergic antagonist [125I]cyanopindolol with a high affinity (KD 67 pM). The [125I]cyanopindolol receptor complex could be solubilized by digitonin and the isoelectric point of the solubilized receptor was found to be 5.8. Brown adipose tissue plasma membranes were labeled with the photoaffinity ligand [125I] cyanopindolol diazirine and labeled membrane proteins were separated by sodium dodecylsulfate polyacrylamide gel electrophoresis and analyzed by autoradiography. Autoradiograms revealed a peptide of 62 kDa whose labeling was stereoselectively displaced by alprenolol and isoproterenol. The beta 1-selective antagonist betaxolol was about 100 times more potent in displacing the labeling of this 62 kDa peptide than the beta 2-selective antagonist ICI 118,551. Based upon these data, it appears that the beta-receptor in brown adipose tissue is a beta 1 subtype with molecular weight of 62 kDa.

Adipose Tissue, Brown↗