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1.
(1) In order to assess the possible role of 3′,5′-(cyclic)adenosine monophosphate (cAMP) in the control of glucose transport, the effect of the nucleotide or agents known to increase its intracellular concentration on sugar transport or 45Ca2+ washout were characterized in epididymal fat pads, free fat cells and soleus muscles of the rat. (2) When added to the incubation medium, cAMP (0.1–2.0 mM) stimulated 3-O-[14C]methylglucose washout from fat pads. This effect was abolished by cytochalasin B, and additive to that induced by submaximal (10–25 μU/ml), but not by supramaximal (10 mU/ml) concentrations of insulin. (3) cAMP (2 mM) stimulated the conversion of [U-14C]glucose into CO2 and triacylglycerols. This effect was additive to that of insulin (100 μU/ml). (4) ACTH, glucagon, adrenaline, noradrenaline and salbutamol, which are all known to increase the cAMP content of adipose tissue, stimulated the washout of 3-O-[14C]methylglucose and 45Ca2+ from preloaded fat pads. The fractional losses of the two isotopes were significantly correlated (P < 0.001, r = 0.73). (5) In free fat cells, adrenaline (10?6 M) and salbutamol (10?5 M) stimulated the uptake of 3-O-[14C]methylglucose, and salbutamol (10?5 M) did not interfere with the stimulating effect of insulin (25 μU/ml) on sugar uptake. (6) In rat soleus muscles, adrenaline and salbutamol produced a dose-dependent stimulation of the washout of 3-O-[14C]methylglucose and 45Ca2+. The effect of adrenaline on sugar efflux was abolished by propranolol. (7) It is concluded that the activation of the glucose transport system by insulin is unlikely to be mediated by a drop in the cellular concentration of cAMP. An increase in cAMP brought about by β-adrenoceptor agonists or lipolytic hormones may induce a mobilization of calcium ions from cellular pools into the cytoplasm, which in turn leads to the activation of the glucose transport system demonstrated in the present as well as in several earlier studies.  相似文献   

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Gray matter and white matter membranes catalyze the transfer of label from UDP-N-acetyl-[14C] glucosamine into N-acetyl[14C]glucosaminyl-pyrophosphoryl-dolichol, N,N′-diacetyl [14C]chitobiosyl-pyrophosphoryl-dolichol, and N-acetyl[14C]glucosamine-labeled glycoprotein. Gel filtration of the Pronase digests of gray matter N-acetyl[14C]glucosamine-labeled glycoprotein reveals two N-acetyl[14C]glucosamine-labeled glycopeptide fractions. One fraction (A) contains approximately eight glycose units. All of the radioactivity is at nonreducing termini and can be released by treatment with an exo-β-N-acetylglucosaminidase. A smaller N-acetyl[14C]glucosamine-labeled glycopeptide (B) is recovered in the elution volume expected for an asparaginyl disaccharide. Structural studies show that the labeled saccharide unit in glycopeptide B is N,N′-diacetyl[14C]chitobiose. The linkage between the 14C-labeled disaccharide and the polypeptide has the properties of an N-glycosidic attachment to asparagine. Only the larger N-acetyl[14C]glucosamine-labeled glycopeptide (A) is found in Pronase digests of white matter membrane N-acetyl[14C]glucosamine-labeled glycoprotein after incubation with UDP-N-acetyl[14C]glucosamine. When gray matter membranes are incubated with UDP-N-acetyl[14C]glucosamine in the presence of tunicamycin or UMP, the labeling of glycolipid and the asparaginyl disaccharide is inhibited. UMP and tunicamycin have no effect on the transfer of N-acetyl[14C]glucosamine to external acceptor sites of the larger glycopeptide (A). The transfer of N,N′-diacetyl[14C]-chitobiose from carrier lipid to protein is observed when extensively washed membranes containing endogenous, prelabeled 14C-labeled glycolipids are incubated in the presence or absence of unlabeled GDP-mannose. UMP treatment of the prelabeled membranes selectively discharged over 80% of the label from N-acetyl[14C]glucosaminyl-pyrophosphoryl-dolichol, but had no effect on the transfer of the 14C-labeled disaccharide to protein. All of these results are concordant with transfer of N,N′-diacetylchitobiose from dolichyl diphosphate to gray matter glycoprotein. The major membrane glycoprotein labeled by the lipid-mediated [14C]disaccharide transfer reaction has an apparent molecular weight of 24,000. Tunicamycin prevents the enzymatic labeling of the gray matter glycoprotein having an apparent molecular weight of 24,000.  相似文献   

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A potent inhibitor of (Na+ + K+)-ATPase activity was purified from Sigma equine muscle ATP by cation- and anion-exchange chromatography. The isolated inhibitor was identified by atomic absorption spectroscopy and proton resonance spectroscopy to be an inorganic vanadate. The isolated vanadate and a solution of V2O5 inhibit sarcolemma (Na+ + K+)-ATPase with an I50 of 1 μM in the presence of 1 mM ethyleneglycol-bis-(β-aminoethylether)-N,N′-tetraacetic acid (EGTA), 145 mM NaCl, 6mM MgCl2, 15 mM KCl and 2 mM synthetic ATP. The potency of the isolated vanadate in increased by free Mg2+. The inhibition is half maximally reversed by 250 μM epinephrine. Equine muscle ATP was also found to contain a second (Na+ + K+)-ATPase inhibitor which depends on the sulfhydryl-reducing agent dithioerythritol for inhibition. This unknown inhibitor does not depend on free Mg2+ and is half maximally reversed by 2 μM epinephrine. Prolonged storage or freeze-thawing of enzyme preparations decreases the susceptibility of the (Na+ + K+)-ATPase to this inhibitor. The adrenergic blocking agents, propranolol and phentolamine, do not block the catecholamine reactivation. The inhibitors in equine muscle ATP also inhibit highly purified (Na+ + K+)-ATPase from shark rectal gland and eel electroplax. The inhibitors in equine muscle ATP have no effect on the other sarcolemmal ATPases, Mg2+-ATPase, Ca2+-ATPase and (Ca2+ + Mg2+)-ATPase.  相似文献   

7.
The kinetic parameters of the sugar transport in avian erythrocytes were evaluated under aerobic and anaerobic conditions. In anaerobic cells, transport measurements with 3-O-[14C] methylglucose resulted in a set of similar dissociation-like constants. Thus the Michaelis constants of 3-O-[14C] methylglucose entry and exit, Kso and Ksi, were 8 and 7 mM, respectively. The equilibrium exchange constant, Bs, and the counterflow constant, Rs, were 9 and 11 mM, respectively. The activity constant for 3-O-methylglucose transport, Fs, defined as V/Km, was 4 ml/h per g. This set of kinetic constants was compatible with a symmetrical mobile-carrier model. In contrast, the Michaelis constant for glucose entry, Kgo, was 2 mM and less than the counterflow constant, Rg (8 mM). This result could be accounted for by slower movement of the glucose-carrier complex than the free carrier. The activity constant for glucose transport, Fg, was 5 ml/h perg.Under aerobic conditions, two of the dissociation-like constants (Ksi and Bs) for 3-O-methylglucose transport were significantly larger than those obtained in anaerobic cells, but the remaining two (Kso and Rs) remained unchanged. The values, for Kso, Ksi, Bs and Rs were 8, 26, 20 and 8 mM, respectively. The activity constant, Fs, decreased to 2 ml/h per g. These changes in kinetic constants were consistent with the hypothesis that anoxia accelerated sugar transport by releasing free carrier that was previously sequestered on the inside of the cell membrane.  相似文献   

8.
The distribution spaces at equilibrium for 3H2O, [14C]urea and 3-O-[14C]-methylglucose were measured in white fat cells using centrifugation through silicone oil at 2500 × g; no significant differences were observed. l-[14C] Glucose added immediately before the centrifugation was used as a marker for the extracellular water space. The calculated intracellular water content of the cells after the centrifugation through oil (e.g. 3H2O space minus l-[14C] glucose space) is an unbiased measure of the water content of the cells in suspension as judged by the following criteria: (1) The intracellular distribution space for 3-O-[14C]methylglucose at equilibrium (methylglucose space minus l-glucose space) was not different from that calculated from a methylglucose wash-out curve. (2) The intracellular content of l-[14C]glucose (half time of efflux about 60 min) in cells preloaded during incubation of the tissue with collagenase was not different in cells recovered by (a) centrifugation through oil at 2500 × g, (b) centrifugation through oil at 600 × g, (c) centrifugation at 600 × g in the absence of oil and (d) filtration on Millipore filters.The intracellular content of water determined on cells from single rats weighing 120–150 g was 2.75 ± 0.55 μl/100 μl fat cells (± S.D., n = 30). The intracellular content of potassium, determined on cells from the same rats, was 252 ± 62 nmols/100 μl fat cells (± S.D., n = 30). The concentration of potassium in the intracellular water was calculated as 104 ± 15 mM (± S.D., n = 30).  相似文献   

9.
Commercial [5-14C]mevalonate is shown to contain several radioactive impurities, which give artifactually high amounts of Hyamine bound, volatile acidic radioactivity when incubated with killed or living rat renal cortex slices, as compared with [5-14C]mevalonate purified either by liquid-liquid partition chromatography or through the enzymically generated R-5-phospho-[5-14C]mevalonate by ion-exchange chromatography. The artifactual 14CO2 results were not diluted by incubation with increasing amounts of unlabelled mevalonate, whereas the 14CO2 and [14C]cholesterol produced by rat renal cortex slices incubated with purified [5-14C]mevalonate were both diluted to the same extent by unlabelled mevalonate. It is concluded that R[5-14C]mevalonate is genuinely oxidized to 14CO2invitro, and that purification of substrate before its use is necessary. Production of 14CO2 and various [14C]lipids from purified [5-14C]mevalonate, as a function of time and substrate concentration, by renal cortex and liver slices, is described.  相似文献   

10.
Reduced glucose transport across the plasma membrane and reduced phosphorylation may both be responsible for the early inhibitory effect of physiological concentrations of glucocorticoids on glucose uptake by rat thymocytes.The early inhibitory effects of glucocorticoids (5 · 10?7 M dexamethasone) on glucose consumption and 14CO2 formation from d-[U-14C]glucose were reproduced.The total uptake curve of 4.8 μM 3-O-[14C]methyl-d-glucose was biexponential with t12 of 1.1 min and 36 min, respectively, the rapid part comprising about 50% of the equilibrated intracellular water space. The latency of the effect of 5 · 10?7 M dexamethasone on 3-O-[14C]methyl-d-glucose uptake ranged from 15 to 100 min and the inhibition varied from 15 to 55% independently of the lag period. The effect of 3-O-methylglucose concentration on the initial uptake by steroid-responsive cell preparations was tested after 45 min of preincubation with or without 5 · 10?7 M dexamethasone. In 12 experiments dexamethasone reduced V from 1.36 ± 0.16 mmol · min?1 · l?1 cell water to 0.81 ± 0.10 mmol · min?1 · l?1 cell water with insignificant change of Km (6.0 mM versus 5.9 mM). Dexamethasone had similar effect after 90 or 120 min.The variabilities of control cell transport capacity, the lag period and the magnitude of the dexamethasone effect could not be accounted for by changes in pH, effects of cell density, concentrations of albumin, ethanol, nucleosides, pyruvate or correlated to age and sex of the rats. In conclusion the inhibition of glucocorticoids on glucose consumption by thymocytes appears to be an inhibited plasma membrane transport capacity.  相似文献   

11.
Rat adipocytes were incubated at 37°C with 2-deoxy-d-[1-14C]glucose ([14C]2dGlc) at various concentrations and the intracellular concentrations of [14C]2dGlc and deoxy[14C]glucose phosphate ([14C]2dGlcP) were measured. Using 7 μM extracellular [14C]2dGlc, the intracellular [14C]2dGlc concentration approached the extracellular by 5 min in insulin-stimulated cells and by 60 min it exceeded the extracellular concentration by 50-fold. A maximum accumulation ratio of 3.5 was reached by 7 min using 1 mM and a ratio of 1.6 was reached by 1 to 3 min using 10 mM extracellular 2dGlc. The time at which the concentration of intracellular 2dGlc exceeded the extracellular was inversely related to the accumulation of 2dGlcP. The rate of accumulation of total radioactivity ([14C]2dGlc plus [14C]2dGlcP decreased after 20 min using 7 μM extracellular [14C]2dGlc. This change occurred later at 22°C or in the absence of insulin and sooner at higher concentrations of 2dGlc. Experiments where uptake was stopped by dilution indicated that radioactivity appearing in the medium was [14C]2dGlc, but radioactivity disappearing from the cells was largerly [14C]2dGlcP. Addition of 10 mM unlabelled 2dGlc or glucose to cells preincubated with 7 μM [14C]2dGlc resulted in a more rapid loss of accumulated label from the cells, while addition of 10 mM 3-O-methylglucose, a non-metabolizeable sugar analogue with about the same affinity for the transport system as 2dGlc, was without effect. The results show that 2dGlc is accumulated against its concentration gradient. It is suggested that the mechanism involves first, dephosphorylation of 2dGlcP and second, the presence of a diffusion barrier between the site of dephosphorylation and the transport site.  相似文献   

12.
Calcium uptake by adipocyte endoplasmic reticulum was studied in a rapidly obtained microsomal fraction. The kinetics and ionic requirements of Ca2+ transport in this preparation were characterized and compared to those of (Ca2+ + Mg2+)-ATPase activity. The time course of Ca2+ uptake in the presence of 5 mM oxalate was nonlinear, approaching a steady-state level of 10.8–11.5 nmol Ca2+/mg protein after 3–4 min of incubation. The rate of Ca2+ transport was increased by higher oxalate concentrations with a near linear rate of uptake at 20 mM oxalate. The calculated initial rate of calcium uptake was 18.5 nmol Ca2+/mg protein per min. The double reciprocal plot of ATP concentration against transport rate was nonlinear, with apparent Km values of 100 μM and 7 μM for ATP concentration ranges above and below 50 μM, respectively. The apparent Km values for Mg2+ and Ca2+ were 132 μM and 0.36–0.67 μM, respectively. The energy of activation was 23.4 kcal/mol. These kinetic properties were strikingly similar to those of the microsomal (Ca2+ + Mg2+)-ATPase. The presence of potassium was required for maximum Ca2+ transport activity. The order of effectiveness of monovalent cations in stimulating both Ca2+ transport and (Ca2+ + Mg2+-ATPase activity was K+ >Na+ = NH4+ >Li+ . Ca2+ transport and (Ca2+ + Mg2+)-ATPase activity were both inhibited 10–20% by 6 mM procaine and less than 10% by 10 mM sodium azide. Both processes were completely inhibited by 3 mM dibucaine or 50 μM p-chloromercuribenzene sulfonate. The results indicate that Ca2+ transport in adipocyte endoplasmic reticulum is mediated by a (Ca2+ + Mg2+)-ATPase and suggest an important role for endoplasmic reticulum in control of intracellular Ca2+ distribution.  相似文献   

13.
Vanadate inhibits the Ca++-ATPase of sarcoplasmic reticulum from pig heart half maximally at about 10?5 M. Mg++ promotes this inhibition by vanadate whereas increasing Ca++-concentrations protect the enzyme against vanadate inhibition. Keeping the ratio Mg++ATP constant there was no influence of ATP on the vanadate inhibition at concentrations up to 5 × 10?3 M ATP. Whenever the ratio Mg++ATP was higher than 1:1 the inhibitory effect of vanadate on the Ca++-ATPase was increased.  相似文献   

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[14C]Guanidine was observed in the urine after subcutaneous administration to rats of l-[guanidino-14C]arginine or l-[guanidino-14C]canavanine. [14C]Hydroxyguanidine was additionally detected in the urine after injection of dl-[guanidino-14C]canavanine. These 14C metabolites were characterized by high-voltage electrophoresis and paper chromatography, by enzymatic conversion of [14C]hydroxyguanidine to [14C]guanidine, and by repeated recrystallization of isolated urinary [14C]guanidine as the picrate salt with no significant loss of specific activity. These experiments demonstrate that both l-arginine and l-canavanine can serve as precursors of guanidine in the rat.  相似文献   

16.
A doubly labeled 3-ketoceramide, [1-14C] lignoceroyl [1-3H2] 3-ketosphingosine (3H14C ratio, 3.61) was injected into the left ventricle of rat heart. The ceramide isolated from the livers of the animals after 1 hr incubation contained an equal 3H>14C ratio of 3.60. This finding strongly supports the existence for direct conversion of 3-ketoceramide to ceramide in rat liver.  相似文献   

17.
Ca2+-dependent K+ transport and plasma membrane NADH dehydrogenase activities have been studied in several ‘high-K+’ (human, rabbit and guinea pig) and ‘low-K+’ (dog, cat and sheep) erythrocytes. All the species except sheep showed Ca2+-dependent K+ transport. NADH-ferricyanide reductase was detected in all the species and showed positive correlation with the flavin contents of the membranes. NADH-cytochrome c reductase was very low or absent in dog, sheep and guinea pig membranes. No correlation was found between NADH dehydrogenase and Ca2+-dependent K+ channel activities in the species studied. Nor were any of the above activities correlated with (Na+ + K+)-ATPase activity.  相似文献   

18.
Using guanidinium and n-butylammonium cations (C+) as models for the positively charged side chains in arginine and lysine, we have determined the association constants with various oxyanions by potentiometric titration. For a dibasic acid, H2A, three association complexes may exist: K1M = [CHA][C+] [HA?]; K1D = [CA?][C+] [A2?]; K2D = [C2A][C+] [CA?]. For guanidinium ion and phosphate, K1M = 1.4, K1D = 2.6, and K2D = 5.1. The data for carboxylates indicate that the basicity of the oxyanion does not affect the association constant: acetate, pKa = 4.8, K1M = 0.37; formate, pKa = 3.8, K1M = 0.32; and chloroacetate, pKa = 2.9, K1M = 0.43, all with guanidinium ion. Association constants are also reported for carbonate, dimethylphosphinate, benzylphosphonate, and adenylate anions.  相似文献   

19.
When [14C]tyrosine and [14C]glucose were fed or injected into feeding fifth-instar larvae of the tobacco hornworm, Manduca sexta (L.), they were incorporated into a conjugate identified in hemolymph and carcass extracts as β-d-glucopyranosyl-O-l-tyrosine. In wandering larvae and pupae, the conjugate was hydrolyzed, and tyrosine was hydroxylated and decarboxylated to dihydroxyphenylalanine and 2-(dihydroxyphenyl)ethylamine. None of these metabolites were formed in fourth-instar larvae or in adults. [14C]Phenylalanine was hydroxylated to tyrosine in all stages of insect development. β-d-Glucopyranosyl-O-l-tyrosine was also detected in 18 other species of Lepidoptera but not in species from other insect orders. This conjugate appears to be the major tyrosine storage metabolite for production of tanning diphenol substrates in Lepidoptera.  相似文献   

20.
(1) Vanadate (VO3?) fully inhibits the ATP-dependent uncoupled Ca efflux (Ca pump) in dialyzed squid axons. (2) Vanadate inhibits with high affinity. The mean apparent affinity (K12) obtained was 7 μM. (3) Inhibition by vanadate is dependent on Cao. External Ca lead to a release of the inhibitory effect. (K12 ≈ 3 mM). This antagonic effect can be reverted by increasing the vanadate concentration. Internal K+ increases the affinity of the intracellular vanadate binding site. External K+ has no effect on the inhibition. (4) Vanadate has no effect on the Nao-dependent Ca efflux component (forward Na-Ca exchange) in the absence of ATP. In axons containing ATP vanadate modified this component.  相似文献   

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