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Biomedical subjects

H Vidal

Publications and source records attributed to H Vidal.

At least 109 records · Page 6Linked to original sources

The two forms of bovine heart 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase result from alternative splicing.

Purified bovine heart 6-phosphofructo-2-kinase/fructose-2,6-bisphosphatase (PFK-2/FBPase-2) showed two bands with subunit M(r) of 58,000 and 54,000 when analysed by SDS/PAGE. Both the 58,000- and 54,000-M(r) forms were phosphorylated by cyclic AMP-dependent protein kinase (PKA) and by protein kinase C (PKC) in vitro. Phosphorylation by PKA decreased the apparent Km of PFK-2 for one of its substrates, fructose 6-phosphate, while phosphorylation by PKC did not correlate with any change in PFK-2 activity. The differences between the 58,000- and 54,000-M(r) forms were studied by electroblotting, peptide mapping and microsequencing. Residues 451-510, which correspond to exon 15 in the rat and contain phosphorylation sites for PKA (Ser-466) and PKC (Thr-475), were absent from the 54,000-M(r) form. Peptide mapping after phosphorylation by [gamma-32P]MgATP and PKC showed a phosphorylated peptide containing Thr-475, which was present in the 58,000-M(r) form but not in the 54,000-M(r) form. The fact that the latter form was phosphorylated by PKC and PKA suggests that other phosphorylation sites for PKA and PKC are located outside the region encoded by exon 15. Finally, analysis of RNA from bovine heart showed that the tissue contains two PFK-2/FBPase-2 mRNAs, only one of which was recognized by a probe specific to the region coding for Ser-466 and Thr-475. Taken together, these findings demonstrate that the 58,000- and 54,000-M(r) forms of bovine heart PFK-2/FBPase-2 result from alternative splicing of the same primary transcript.

Amino Acid Sequence↗

Interaction of mannose-6-phosphate with the hysteretic transition in glucose-6-phosphate hydrolysis in intact liver microsomes.

We showed previously that glucose-6-phosphatase activity was characterised in intact liver microsomes by a hysteretic transition between a rapid and a slower catalytic form of the enzyme. We have now further investigated the substrate specificity of these two kinetic forms. It was found that the pre-incubation of intact microsomes with mannose-6-phosphate or glucose-6-phosphate (50 microM for 30 s) suppressed the burst in glucose-6-phosphatase activity, that the hysteretic transition was reversible and that mannose-6-phosphate inhibited glucose-6-phosphate hydrolysis during the first seconds of incubation, but not anymore after the burst. Our results indicate (i) that mannose-6-phosphate is recognised by the enzyme and can promote the hysteretic transition and (ii) that the transient phase is part of the catalytic mechanism itself.

Animals↗

Inhibition of hepatic ketogenesis by tumor necrosis factor-alpha in rats.

Tumor necrosis factor-alpha (TNF-alpha) stimulates hepatic lipogenesis. Therefore, it could play a role in the control of ketogenesis. To test this hypothesis, we measured simultaneously free fatty acids (FFA; [1-13C]palmitate) and ketone body (KB; [3,4-13C2]acetoacetate) kinetics, before and after intraperitoneal injection of saline or TNF-alpha, in postabsorptive rats or rats starved for 24 h. In both groups of rats, TNF-alpha injection did not modify insulinemia and induced a moderate increase of FFA concentrations and appearance rates (P < 0.05). Despite increased FFA availability, ketogenesis was impaired after TNF-alpha injection, as shown by lower KB concentrations and appearance rates; this effect was more important in postabsorptive than in starved rats. The percentage of FFA flux used for ketogenesis was decreased by TNF-alpha in the postabsorptive group (P < 0.05) and starved (P < 0.05) rats. In both groups, maximal liver acetyl-coenzyme A carboxylase activity and estimated phosphorylation state were not modified by TNF-alpha injection, but hepatic concentrations of citrate were increased (P < 0.05). This increased citrate level could be related to a mobilization of glucose stored as glycogen since liver glycogen was decreased by TNF-alpha injection (P < 0.05). In conclusion, TNF-alpha injection in rats decreased hepatic ketogenesis. This action could be related to an increased mobilization and utilization of carbohydrate stores.

Absorption↗

The acetabular opening angle in Perthes' disease. Radiographic study of 62 unilateral cases.

Pelvis AP radiographs in 62 patients with unilateral Perthes' disease were studied in search of changes of the acetabulum throughout the active stages of this disease. The length of the acetabular roof, the diameter of the acetabulum, and the opening angle of the acetabulum, were compared with the contralateral hip. The length of the acetabular roof did not change, but the opening angle and the diameter of the acetabulum increased. This increase began in the earliest stage of the disease in half of the cases; it reached a maximum during the resorptive and the reconstructive stages, then it decreased to reach normal values at skeletal maturity. These changes were related to the extent of the epiphyseal necrosis. Probable causes were local hyperemia and a mechanical adaptation of the acetabulum to a cartilaginous coxa magna. The opening angle has a prognostic value and influences our choice of therapy.

Acetabulum↗

Rapid kinetics of liver microsomal glucose-6-phosphatase. Evidence for tight-coupling between glucose-6-phosphate transport and phosphohydrolase activity.

Rapid kinetics of both glucose-6-P uptake and hydrolysis in fasted rat liver microsomes were investigated with a recently developed fast-sampling, rapid-filtration apparatus. Experiments were confronted with both the substrate transport and conformational models currently proposed for the glucose-6-phosphatase system. Accumulation in microsomes of 14C products from [U-14C]glucose-6-P followed biexponential kinetics. From the inside to outside product concentrations, it could be inferred that mostly glucose should accumulate inside the vesicles. While biexponential kinetics are compatible with the mathematical predictions of a simplified substrate transport model, the latter fails in explaining the "burst" in total glucose production over a similar time scale to that used for the uptake measurements. Since the initial rate of the burst phase in untreated microsomes exactly matched the steady-state rate of glucose production in detergent-treated vesicles, it can be definitely concluded that the substrate transport model does not describe adequately our results. While the conformational model accounts for both the burst of glucose production and the kinetics of glucose accumulation into the vesicles, it cannot explain the burst in 32Pi production from [32P]glucose-6-P measured under the same conditions. Since the amplitude of the observed bursts is not compatible with a presteady state in enzyme activity, we propose that a hysteretic transition best explains our results in both untreated and permeabilized microsomes, thus providing a new rationale to understand the molecular mechanism of the glucose-6-phosphatase system.

Animals↗

A test to evaluate the effect of individual components of ethylene glycol bis(beta-aminoethyl ether)-N,N,N',N'-tetraacetic acid buffers on enzymatic activity.

A simple dilution test for evaluating the individual effect on enzymatic activity of [Ca2+], [EGTA], or [Ca.EGTA] variations in Ca-EGTA buffers is presented. We verified that a 50-fold dilution of the buffer (25-0.5 mM) at constant pH did not affect [Ca2+] (measured with fura-2), whereas [EGTA] and [Ca.EGTA] varied. Therefore the test can be applied to evaluate the proper effect of Ca2+ in a Ca-EGTA buffer on enzyme activity because such an effect is expected to remain unchanged upon dilution of the buffer. Applications of the test are shown for three enzymes apparently sensitive to Ca2+ but found to be effectively influenced only by Ca.EGTA (liver glucose-6-phosphatase), EGTA (intestinal mucosa phosphatase), or indeed Ca2+ (brain cyclic nucleotide phosphodiesterase).

3',5'-Cyclic-AMP Phosphodiesterases↗

Effect of physiological concentrations of insulin and glucagon on the relationship between nonesterified fatty acids availability and ketone body production in humans.

To determine the effect of insulin and glucagon on the transformation of nonesterified fatty acids (NEFA) into ketone bodies (KB), we measured simultaneously in normal subjects NEFA and KB kinetics at different NEFA levels in the presence of basal (control test) or increasing insulin concentrations with glucagopenia (somatostatin + insulin infusion, insulin test) and without glucagopenia (somatostatin + insulin + glucagon infusion, glucagon test). NEFA levels were controlled during these tests by an intravenous (IV) infusion of a triglyceride emulsion. During the control test, a moderate increase of NEFA (464 +/- 30 to 715 +/- 56 mumol/L) increased the percentage of NEFA converted into KB (13.3% +/- 1.4% to 26.4% +/- 2.1%, P less than .05), and there was a linear relationship between this percentage and NEFA levels (r = .788, P less than .01). During the insulin and glucagon tests, the progressive increase in NEFA induced by the triglyceride emulsion infusion was associated, despite the increase of insulinemia, with an increase in KB production rate (P less than .05) and in the proportion of NEFA used for ketogenesis in the presence (8.1% +/- 1.2% to 14.2% +/- 6.3%, P less than .05) and absence (15.7% +/- 2.8% to 25.2% +/- 3.99%, P less than 0.05) of glucagopenia. In both tests, this percentage was always linearly related with NEFA levels (P less than .05) and the slopes of these relationships were comparable to that observed in the control test. However, the fraction of NEFA used for ketogenesis was always higher (P less than .05) during glucagon substitution than in its absence.(ABSTRACT TRUNCATED AT 250 WORDS)

Absorption↗

[Incorporation of transferrin into the erythron in anemic and polycythemic conditions].

A ferrokinetic study was performed in 79 patients, 25 with absolute polycythaemia, 19 with relative polycythaemia and 35 presenting anaemia of different aetiology. The incorporation of transferrin into the erythron (ITE) was estimated on each case. The mean ITE values found in absolute primary and secondary polycythaemia and in secondary polycythaemia were, respectively, 281 +/- 85, 181 +/- 99 and 74 +/- 19 mumol/L tb/d (i.e., micromoles per litre of total blood per day). The mean ITE in iron deficiency anaemia was 110 +/- 43 mumol/L tb/d, in haemolytic anaemia this was 274 +/- 151 mumol/L tb/d, and in patients with myelodysplastic syndromes such values was 116 +/- 49 mumol/L tb/d. Significant differences were found for each group of patients with respect to a normal control group. Such findings are in accordance with the pathophysiology of the different pathologies studied. The values found in haemolytic anaemia and myelodysplastic syndromes are similar to those reported by others. The results of this study stress the advantages of evaluating the erythropoietic activity of the bone marrow by means of the ITE.

Adult↗

Influence of thyroid hormones on gluconeogenesis from glycerol in rat hepatocytes: a dose-response study.

The role of L-3,3'-5 triiodothyronine (T3), in a pathophysiological range, on gluconeogenesis from low concentration of glycerol (2 mmol/L), was investigated in isolated liver cells from 24-hour fasted rats either thyroidectomized, normal, or treated by a T3 dose ranging from 1, 5, or 10 micrograms/d/100 g body weight (BW) during 3 days to 50 micrograms during 7 days. Gluconeogenesis from glycerol was decreased by 63% in hypothyroid rats and increased by 35% in severely hyperthyroid rats. However, in cells from mild hyperthyroid rats no increase of gluconeogenesis was observed. Nevertheless, in mild hyperthyroidism, alpha-glycerophosphate (G3P) was significantly decreased and gluconeogenesis from glycerol was not inhibited by the addition of ethanol (10 mmol/L), both of which have a drastic effect in cells from thyroidectomized rats. The decrease of gluconeogenesis observed in cells from thyroidectomized rats was reversed by the addition of pyruvate (10 mmol/L). Thus, when the cells were in a "reduced state" (addition of ethanol) the differences between the group were magnified, and when the cells were in an "oxidized state" (addition of pyruvate) the differences were suppressed. These findings suggest that alteration of the capacity of reducing equivalents transfer from the cytoplasmic compartment to the mitochondria is the main mechanism by which mild hyperthyroidism can stimulate gluconeogenesis.

Animals↗

Interactions of glucagon and free fatty acids with insulin in control of glucose metabolism.

To study the interactions of physiological glucagon and free fatty acids (FFA) concentrations with insulin in the control of glucose metabolism, we determined in normal subjects the response of endogenous glucose production (EGP) and glucose utilization (Rd) to a progressive and moderate increase of insulinemia in the presence of glucagon and FFA levels either decreased (somatostatin [SRIF] and insulin infusion, C test) or maintained to normal postabsorptive values isolated (SRIF + insulin + glucagon infusion, G test; SRIF + insulin + Intralipid infusion, IL test) or in association (SRIF + insulin + glucagon + Intralipid infusion, IL + G test). Compared with the C test, maintenance of glucagon level had only small and inconsistent effects on glucose Rd, but induced a shift to the right of the dose-response curve to insulin of EGP (apparent ED50: C test, 10.9 mU.L-1; G test, 15.2 mU.L-1). Intralipid infusion resulted, whether glucagon was substituted or not, in a near total suppression of the insulin-induced increase of glucose Rd (Rd at the end of the tests: C test, 6.13 +/- 0.85 mg.kg-1.min-1; G test, 7.29 +/- 0.87 mg.kg-1.min-1; IL test, 3.30 +/- 0.65 mg.kg-1.min-1; IL + G test, 3.57 +/- 0.42 mg.kg-1.min-1). In the absence of glucagon, substitution Intralipid infusion also antagonized the action of insulin on EGP. However, this effect was no longer apparent when glucagon was replaced (dose-response curve to insulin of EGP during the G and the IL + G test were comparable).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Ferritin determination in elderly people by enzyme immunoassay.

Iron is associated with important biological processes: Cellular and molecular oxidation, muscle contraction and infection resistance. Iron stores can be estimated by Ferritin (FTN) determination. FTN quantitation can be used in the early diagnosis of ferropenic anemia (precedes 3-6 months the clinical appearance of anemia) in pregnant women, children and elderly people. FTN serum levels are associated with high incidence diseases as malignant tumors and hepatopathies. Serum FTN concentration is in the range of ng/ml. So, high sensitivity techniques with radioactive, enzymatic, fluorescent or luminescent tracers are needed for FTN quantitation. An affinity antibody enzyme labelled procedure with a 2.5-500 ng/ml range, compatible with various plastic solid supports was developed to study Ferritinemia in elderly persons. Ferritinemia was found to be less than 20 ng/ml in 12% institutionalized elderly persons.

Aged↗

Vasoactive intestinal peptide stimulates long-chain fatty acid oxidation and inhibits acetyl-coenzyme A carboxylase activity in isolated rat enterocytes.

The effects of vasoactive intestinal peptide (VIP) on fatty acid oxidation in isolated rat enterocytes were investigated. VIP (10(-7) M) increased more than 2-fold the production of 14CO2 from [U-14C]palmitate. This effect was dose-dependent (K0.5 = 5.10(-11) M) and appeared to be related to the stimulation of cAMP production since it was mimicked by forskolin (10(-4) M). VIP also stimulated oxygen consumption of the cells, an effect accounted for by the stimulation of the oxidation of both exogenous added palmitate (0.12 mM) and endogenous fatty acids produced by lipolysis. VIP appeared to specifically enhance the oxidation of long-chain fatty acids since its effects were counteracted by 5.10(-5) M sodium 2-[6-(chlorophenoxy)hexyl]oxirane-2-carboxylate, a potent inhibitor of carnitine palmitoyltransferase 1, and since VIP did not affect cell respiration in the presence of octanoate. These results suggested that VIP stimulated long-chain fatty acid oxidation by increasing their translocation into the mitochondria. Therefore, we examined the effect of VIP on the activity of acetyl-coenzyme A carboxylase, the enzyme responsible for the biosynthesis of malonyl-CoA, a physiological inhibitor of carnitine acyltransferase 1. VIP produced an acute, dose-dependent (Ki = 3.10(-11) M), 90% inhibition of acetyl-coenzyme A carboxylase activity. These results allow us to elucidate the mechanism of the recently reported inhibitory effect of VIP on glucose oxidation (Vidal, H., Comte, B., Beylot, M., and Riou, J. P. (1988) J. Biol. Chem. 263, 9206-9211) and demonstrate for the first time that balance between fatty acids and glucose as energetic fuels is under neurohormonal control in isolated rat enterocytes.

Acetyl-CoA Carboxylase↗

Positional isotopic analysis of 13C-labelled glucose by mass spectrometry: applications to the study of gluconeogenesis in liver cells.

The aim of the present investigation was to ascertain whether mass spectrometric analysis of glucose allows determination in small samples (0.01 nmol) of the sites and the extent of labelling of glucose produced by isolated liver cells from various gluconeogenic labelled precursors. The electron impact spectrum of the methyloxime pentatrimethylsilyl derivative of natural glucose affords fragment ions retaining specific carbon atoms, i.e. 1-2 (m/z 160), 1-2-3 (m/z 262), 3-4-5-6 (m/z 319), 4-5-6 (m/z 217), 5-6 (m/z 205), 6 (m/z 103). The mass fragmentography analysis of the same derivative of commercially available labelled glucose molecules (1-13C, 6-13C, 2-2H, 3-2H, 6,6-2H2) permitted evaluation of the degree of specificity of these fragment ions, and development of a calculation method for isotope incorporation. Using this methodology we found that incubation of hepatocytes with (2-13C)glycerol, (1,3-13C)glycerol or NaH13CO3 plus pyruvate or lactate produced (2,5-13C)glucose, (1,3,4,6-13C) glucose or (3,4-13C)glucose, respectively. The extent of labelling was measurable on individual carbon of the glucose molecule except for carbon 1. The lowest enrichment detectable on carbon 1-3 or 3 was found to be 0.5%. In conclusion, gas chromatography mass spectrometry is a reliable method for positional isotopic analysis of 13C-labelled glucose, and appears useful in the study of the gluconeogenic pathway.

Animals↗

Alpha 2-adrenergic stimulation counteracts the metabolic effects of vasoactive intestinal peptide in isolated rat enterocytes.

The purpose of this investigation was to determine if alpha 2-adrenergic receptor activation suppresses the effects of vasoactive intestinal peptide (VIP) on glucose and fatty acid metabolism in isolated rat enterocytes. VIP (10(-7) M) produced an acute 40% inhibition of glucose oxidation and a 115% stimulation of palmitate oxidation. Addition of epinephrine (10(-6) M) together with propranolol (10(-6) M) to avoid interference with beta-adrenoreceptors did not affect basal glucose and palmitate oxidation, but suppressed the effects of VIP by more than 90%. The inhibition by VIP of pyruvate dehydrogenase and acetylcoenzyme-A carboxylase, the enzymes considered as the target sites for the neuropeptide, was also abolished by epinephrine. We assumed that epinephrine acted through the stimulation of alpha 2-adrenergic receptors, since 1) epinephrine suppressed VIP-induced accumulation of cAMP in the cells; and 2) the alpha 2-agonist clonidine (10(-6) M) reproduced epinephrine effects, whereas they were abolished by the alpha 2-antagonist yohimbine (10(-6) M). These findings strengthen the assumption that VIP controls glucose and fatty acid metabolism by a cAMP-dependent mechanism and demonstrate, for the first time, that the contribution of substrates as energy fuel is under dual neurohormonal regulation by VIP and catecholamines in isolated rat enterocytes.

1-Methyl-3-isobutylxanthine↗

[Effects of VIP (vasoactive intestinal peptide) on plasma membrane ATPases from rat enterocytes].

We studied the effect of VIP on the ATPase activities from basolateral membranes prepared from rat enterocytes. Under the standard conditions of assay for membrane ATPases (millimolar ATP concentration) VIP has no effect, neither on the Na, K ATPase activity (ouabain sensitive) nor on the Mg ATPase activity (ouabain insensitive). These results suggest that short-term effects of VIP on ionic permeability and metabolism of enterocytes, are not mediated through modifications of the Na/K ratio by the Na, K ATPase or through modifications of another membrane ATPase activities.

Adenosine Triphosphatases↗

Comparison of the cytotoxic potency of T101 Fab, F(ab')2 and whole IgG immunotoxins.

The in vitro killing of the human CEM cell line was studied by using ricin A-chain immunotoxins constructed with either the whole IgG or the Fab and F(ab')2 fragments of the same T101 (anti-CD5) antibody. In the presence of ammonium chloride as an activator, the "whole" immunotoxin as well as the "fragment" immunotoxins did not show any significant difference in the cell killing efficacy. In contrast, without the activator, the efficacy of the T101 immunotoxin was greatly improved when fragments were used. Indeed, at a saturating dose, a cytoreduction of three orders of magnitude was obtained with the fragment immunotoxins vs less than one order of magnitude for the whole immunotoxin, as assessed in a clonogenic assay. This enhancing effect was related to better cell killing kinetics, because with a similar amount of A-chain molecules bound per cell, T101 fragment immunotoxins achieved a twofold faster protein synthesis inactivation rate than the corresponding whole IgG immunotoxin. No significant difference in activity was shown between monovalent (Fab) and divalent (F(ab')2) forms of fragment immunotoxins. The observation that T101 fragment immunotoxins were more potent than intact immunotoxins was extended to another fragment immunotoxin constructed with an antibody (F111.98) directed against a different epitope of the CD5 Ag. In another model (anti-CD22 1G11 antibody on Raji cells), the fragment immunotoxin did not show any superiority over the IgG immunotoxin which was by itself very potent, strongly suggesting an Ag-dependent phenomenon.

Animals↗