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Biomedical subjects

P Fürst

Publications and source records attributed to P Fürst.

At least 19 recordsLinked to original sources

Nitrogen absorption from isonitrogenous solutions of L-leucyl-L-leucine and L-leucine: a study in the isolated perfused rat small intestine.

1. We assessed the efficacy of nitrogen absorption from luminal L-leucine (1.2 and 12 mmol/l) and from isonitrogenous L-leucyl-L-leucine (0.6 and 6.0 mmol/l) in a preparation of vascularly and luminally perfused rat small intestine by measuring luminal leucyl-leucine disappearance and venous leucine appearance. 2. No intact dipeptide was found in the vascular perfusate. Leucine-nitrogen absorption, as judged by venous leucine appearance, was as efficient from free leucine (29 +/- 3 and 245 +/- 19 ng-atom min-1 g-1) as from leucyl-leucine (27 +/- 4 and 211 +/- 58 ng-atom min-1 g-1). It was not reduced in the presence of glycyl-L-proline or of the brush-border dipeptidase inhibitors alanine-beta-naphthylamide and cilastatin. 3. After one passage of the whole small intestine, only trace amounts of dipeptide, but large amounts of free leucine, were detected in the luminal effluent. Peptidase activity in the luminal effluent was demonstrated in 100,000 g supernatant and was inhibited by p-hydroxy-mercuribenzoate, but not by brush-border dipeptidase inhibitors. 4. We propose that nitrogen absorption from luminal leucyl-leucine may proceed predominantly via intraluminal peptide hydrolysis and subsequent transport of free leucine. Nevertheless, our findings and conclusions are at variance with previous observations and current opinion on intestinal handling of dipeptides, which may be due, in part, to the different methodological approach.

Animals

The Saccharomyces cerevisiae CDC25 gene product binds specifically to catalytically inactive ras proteins in vivo.

Genetic data suggest that the yeast cell cycle control gene CDC25 is an upstream regulator of RAS2. We have been able to show for the first time that the guanine nucleotide exchange proteins Cdc25 and Sdc25 from Saccharomyces cerevisiae bind directly to their targets Ras1 and Ras2 in vivo. Using the characteristics of the yeast Ace1 transcriptional activator to probe for protein-protein interaction, we found that the CDC25 gene product binds specifically to wild-type Ras2 but not to the mutated Ras2Val-19 and Ras2 delta Val-19 proteins. The binding properties of Cdc25 to Ras2 were strongly diminished in yeast cells expressing an inactive Ira1 protein, which normally acts as a negative regulator of Ras activity. On the basis of these data, we propose that the ability of Cdc25 to interact with Ras2 proteins is strongly dependent on the activation state of Ras2. Cdc25 binds predominantly to the catalytically inactive GDP-bound form of Ras2, whereas a conformational change of Ras2 to its activated GTP-bound state results in its loss of binding affinity to Cdc25.

Amino Acid Sequence

[The effect of the calf spleen and calf thymus extracts, thymopentin and tuftsin, on the phagocytosis activity of neutrophilic granulocytes].

In the present in vitro study, the influence of proteolytic as well as untreated spleen and thymus extracts and, as a comparison, of biologically active peptides tuftsin and thymopentin on the phagocytic activities of human polymorphonuclear leukocytes was investigated. At a chosen concentration of 200 micrograms/ml, all products studied exhibited a significant stimulation of polymorphonuclear leukocyte activity, when lucigenin-amplified chemiluminescence was measured. This effect was considerably enhanced with tuftsin, thymopentin and spleen extract, compared to the thymus preparations. No difference in chemiluminescence was obvious between hydrolyzed and untreated thymus extracts. In parallel experiments, phagocytosis of opsonized zymosan was investigated by light microscopy. Using identical substrate concentrations, only spleen extract showed significant stimulation. This observation indicates that the investigated polymorphonuclear leukocyte activities may be caused by substrate-specific mechanism on the cellular level.

Adult

Effects of dexamethasone on glutamine metabolism in the isolated vascularly perfused rat small intestine.

Post-stress metabolism is associated with a large glutamine (Gln) efflux from muscle and an increased Gln utilization by the small intestine. Both appear to be modulated by corticosteroids. The present investigation was performed to better characterize the mechanism of corticoid action on Gln metabolism in an isolated preparation of vascularly perfused rat small intestine. In all perfusions, a synthetic perfusate free from blood components was used with only 0.6 mM Gln and 10 mM glucose as substrates. Irrespective of dexamethasone concentrations in the vascular perfusate (none, 0.25 mg l-1, or 2.5 mg l-1, isolated intestines from normal rats exhibited unchanged extraction rates of Gln (-85 +/- 8, -89 +/- 10, and -87 +/- 16 nmol min-1 g-1) and unchanged production rates of alanine (43 +/- 9, 40 +/- 7, and 51 +/- 5 nmol min-1 g-1) and ammonia (49 +/- 15, 45 +/- 13, and 54 +/- 13 nmol min-1 g-1). Similarly, when intestines were vascularly perfused 2 or 9 days after dexamethasone injection (0.45 mg kg-1 BW), net Gln uptake also remained unchanged (-88 +/- 16 and -84 +/- 11 nmol min-1 g-1). There was, however, a shift in nitrogenous products of Gln metabolism from ammonia (-31% and -38%) to alanine (+16% and +64%). Thus, the failure of dexamethasone to increase Gln uptake in the isolated rat intestine may indicate that rather than acting directly on the mucosa, dexamethasone could regulate intestinal Gln consumption in vivo by indirect mechanisms possibly involving extramucosal tissues. Dexamethasone pretreatment may modulate the pattern of nitrogenous products in portal venous blood presented to the liver and thus support enhanced nitrogen loss through ureagenesis by metabolic cooperation between gut and liver.

Alanine

Thermogenesis of white adipocytes: a novel method allowing long-term microcalorimetric investigations.

A microcalorimetric method was developed to facilitate long-term assessment of energy balance in isolated fat cells. White rat adipocytes were primary cultured in glass ampoules with a matrix of agar-gel. Heat production was measured continuously over 3 days with an LKB BioActivityMonitor. In order to assist interpretation of the microcalorimetric measurements, glucose consumption and lactate and pyruvate production were determined in parallel cultures. Heat production, glucose consumption and lactate production were in an apparent steady state throughout the study whether employing aerobic (94 pW, 0.50 and 0.44 pmol/cell. h, respectively) or partial anaerobic experimental conditions (39 pW, 0.41 and 0.57 pmol/cell.h, respectively). However, oxygen availability influenced the apparent heat production and glucose and lactate metabolism. With partial anaerobiosis a 59% lower heat production, an 18% lower glucose consumption and a 30% higher lactate production than by employing aerobic experimental conditions were observed.

Adipose Tissue

Whole-body autoradiography in rats after intravenous administration of L-alanyl-L-[U-14C]glutamine.

The uptake and distribution in rats of the radiolabelled dipeptide L-alanyl-L-[U-14C]glutamine were investigated by whole-body autoradiography. Rats were killed 5, 30 and 180 min following bolus injection of the peptide via the tail vein and, as a comparison, 180 min after injection of [U-14C]glutamine; 30-microns sections of the animals were autoradiographed against an X-ray film. Tissue specimens from the remainder of the carcass were completely combusted and the 14CO2 formed was analyzed by liquid scintillation counting. Visceral organs especially exocrine glands and the mucosa of the alimentary tract showed an initially high labelling (5 min), whereas skeletal muscle and brain exhibited maximum radioactivity 30 min after peptide bolus. Muscle and intestine (19 and 10% of the dose injected, respectively) showed the highest 14C incorporation of all tissues investigated. The broad conformity in 14C distribution observed after peptide and glutamine bolus strongly indicates similar utilization of free and peptide-bound glutamine.

Animals

Kinetically controlled synthesis of dipeptides using ficin as biocatalyst.

The application of the sulfhydryl protease ficin as biocatalyst is proposed as a novel method for enzyme-catalyzed synthesis of dipeptides. The negligible peptidase but considerable esterase activity at alkaline pH facilitated the kinetically controlled formation of peptide bonds by coupling the ester substrates Z-Ala-OMe and Z-Gly-OMe with L-alanine, D-alanine, L-glutamine, D-glutamine and L-Cys(acetamidomethyl) respectively. The reaction is accomplished without the occurrence of secondary peptide hydrolysis. Under optimum reaction conditions (pH 9.2, high ratio nucleophile/carboxyl component, 4.8% ethanol, 40 degrees C), the peptide yields ranged from 5 to 91%, depending on the structure of the amino and/or carboxyl component. No racemization was observed in the enzymatic reaction. Application of short-chain peptides has been advocated recently in clinical nutrition. Ficin-catalyzed peptide synthesis might be an attractive biotechnological approach for the synthesis of suitable dipeptides in this respect.

Amino Acids

[Parenterally administered medium-chain triglyceride-induced changes in carnitine metabolism].

Medium-chain triglycerides are generally assumed to be metabolized independently of carnitine. The effects of infusing medium-chain triglycerides on plasma concentrations of carnitine derivatives and beta-hydroxybutyrate was studied in four healthy male adults. Glucose and amino acids were infused alone for three hours, then continued for another 5.5 hours together with a lipid emulsion containing only long-chain triglycerides or a mixture of medium-chain and long-chain triglycerides (50:50; w/w). During the fat-free infusion, the concentration of free carnitine rose, while the level of acylcarnitines decreased. Infusion of the mixed emulsion over 5.5 hours reduced free carnitine to lower values (32.4 +/- 4.7 mumols/L) than long-chain triglycerides infusion (44.4 +/- 2.7 mumols/L). By contrast, the plasma concentrations of short-chain acylcarnitines (12.1 +/- 3.3 vs. 5.4 +/- 1.9 mumols/L; p less than 0.01) and of beta-hydroxybutyrate (93 +/- 32 vs. 47 +/- 14 mumols/L; p less than 0.01) became significantly higher with the mixed emulsion than with long-chain triglycerides. These findings suggest that oxidation of medium-chain fatty acids is to some extent carnitine-dependent, whether or not transport into mitochondria is carnitine-mediated.

Adult

Appraisal of four pre-column derivatization methods for the high-performance liquid chromatographic determination of free amino acids in biological materials.

Reversed-phase high-performance liquid chromatography (RP-HPLC) is a powerful method for assaying physiological amino acid concentrations in biological fluids. Four pre-column derivatization methods, with o-phthaldialdehyde (OPA), 9-fluorenylmethyl chloroformate (FMOC-Cl), phenyl isothiocyanate (PITC) and 1-dimethylaminonaphthalene-5-sulphonyl chloride (dansyl-Cl), were assessed with respect to their applicability in biological research. The methods permit the measurement of 21-26 major amino acids in 13-40 min. The superior sensitivity favours the use of OPA, FMOC-Cl and dansyl-Cl techniques. Because of instability of the OPA adducts, automated on-line derivatization is required when using this method in general practice. Application of the PITC method, although less sensitive, is useful in clinical chemistry, where sample availability is rarely a problem. Cystine determination is not feasible when using OPA or FMOC-Cl and with PITC the reproducibility and linearity are poor, whereas the dansyl-Cl method allows reliable quantitation. The four methods are currently used to perform ca. 8000 OPA and 5000-6000 FMOC-Cl, PITC and dansyl-Cl analyses of biological samples per year. The results obtained with the RP-HPLC methods compare favourably with those derived from conventional ion-exchange amino acid analyses. When the guard column is regularly changed after 120 analyses, the separation remains satisfactory for at least 700 OPA, 800 FMOC-Cl, 150 PITC and 500 dansyl-Cl analyses. Careful control of factors and limitations inherent in the various methodologies is a prerequesite for proper identification and appropriate quantitation.

Amino Acids

Papain-catalysed synthesis of dipeptides: a novel approach using free amino acids as nucleophiles.

For the first time, papain-catalysed synthesis of peptide bonds was successfully carried out using free amino acids as nucleophiles. In kinetically controlled experiments employing pH-Stat-mode, the ester substrates Z-Ala-OMe and Z-Gly-OMe were coupled with alanine, glutamine, and Cys(Acm)-OH, respectively. Under optimized reaction conditions (pH 9.2, high ratio nucleophile/carboxyl component, 10 mumol substrate mg-1 papain), the peptide yields ranged from 17% to 79%, depending on the structure of the amino and/or carboxyl component. The peptides formed were not hydrolysed under the chosen reaction conditions. With Z-Gly-OMe as the ester substrate, formation of the dipeptide was both rapid and high yielding. Papain-catalysed formation of peptide bonds applying free amino acids as nucleophiles might serve as an economic and easily manageable approach for the synthesis of short-chain peptides to be used in clinical nutrition.

Amino Acid Sequence

Microcalorimetric investigations on human leukemia cells--Molt 4.

Heat production by leukemia cells Molt 4, growing in suspensions with 1 and 3 x 10(5) cells/ml for 4 days, was studied by microcalorimetry. Heat production rates were related to cell growth, glucose consumption, lactate production and cellular ATP-content. The results show that the time course of heat dissipation is dependent on initial cell number. However, observed thermal power maxima were fairly identical in all experiments. Heat production rates per cell were similar during the initial phase of the study independently of initial cell number, while higher cell densities resulted in significantly lower rate of heat production. Glycolytic conversion of glucose into lactate is nearly stoichiometric. Our results indicate a relationship between heat production and amounts of glucose and lactate in the medium. ATP concentration in cells decreased after 24 hours of culture.

Adenosine Triphosphate

Kinetics of intravenously administered carnitine in haemodialysed children.

The pharmacokinetics of low-dose bolus L-carnitine (5 mg kg-1 body wt) in five haemodialysed children were investigated. Kinetic variables were obtained by applying a two-compartment open model. The elimination half-life was very short, 2.43 +/- 0.35 h, despite the reduced plasma clearance of 41.2 +/- 5.7 ml min-1, compared with healthy adults. The apparent volume of distribution, 0.27 +/- 0.07 1 kg-1 body wt, corresponds well to the size of the extracellular space. The kinetic behaviour of intravenously supplied carnitine may assist in future evaluations of the therapeutic application of this drug in uraemic children.

Adolescent

Plasma and muscle free amino acids in maintenance hemodialysis patients without protein malnutrition.

To investigate how uremia modified by maintenance hemodialysis treatment influences the extra- and intracellular amino acid pattern, we collected muscle samples by percutaneous muscle biopsy and plasma samples for determination of free amino acids in 11 functionally anephric patients (creatinine clearance less than 1 ml/min), who had been treated with hemodialysis for greater than 6 months and had no clinical or laboratory signs of protein malnutrition. Five patients had mild acidosis (standard bicarbonate pre-dialysis 18 to 21 mmol/liter). The amino acid results were compared with data from age- and sex-matched healthy controls and with data obtained earlier from non-dialyzed patients with chronic uremia. In the hemodialysis patients threonine, serine and valine were significantly reduced in plasma compared to the controls, whereas the plasma concentrations of aspartate, glycine, citrulline, cysteine and arginine were elevated. In aspartate, glycine, citrulline, cysteine and arginine were elevated. In muscle, valine, serine and the tyrosine to phenylalanine ratio were low. Compared with the untreated uremic patients the hemodialysis patients exhibited fewer significant abnormalities, but the general pattern was similar, demonstrating that hemodialysis is unable to fully correct the amino acid abnormalities of chronic uremia. There was a significant positive correlation between both pre-dialysis and post-dialysis plasma bicarbonate and the muscle valine concentration, suggesting that mild acidosis may be causally related to the inbalance of the branched-chain amino acids in uremia. Extra- and intracellular serine depletion in the presence of high plasma glycine may reflect a defect in the metabolism of glycine to serine in hemodialysis patients, related to a lack of metabolizing renal tissue.

Adult

Effect of a test meal, without and with protein, on muscle and plasma free amino acids.

1. The effect of a protein-free meal and a protein-rich meal on the concentration of free amino acids in plasma and muscle tissue was studied in eight healthy subjects. The energy content of the protein-free meal was 3800 kJ. The protein-rich meal was identical in composition except that 50 g of bovine serum albumin was added. Plasma and samples from the quadriceps femoris muscle (percutaneous muscle biopsy) for amino acid determination were collection before and at 1, 3, 5 and 7 h after the meal. 2. After the protein-free meal the concentrations of most essential amino acids and of some non-essential amino acids in plasma decreased continuously below basal levels at 5-7 h. The muscle concentration of essential amino acids fell too, reaching its nadir 3-5 h after the meal. The decrease in plasma amino acid concentration was smaller than the decrease in muscle concentration for all essential amino acids except phenylalanine. 3. The concentrations of most amino acids in plasma increased transiently 1 and 3 h after the protein-rich meal; histidine and several non-essential amino acids fell below the basal levels at 5-7 h after the meal. In muscle, threonine, valine, leucine, lysine and alanine were increased at 1 and 3 h after the protein-rich meal; isoleucine, serine and glycine fell below the basal level after 5 and 7 h. For the essential amino acids except threonine and lysine, the increase in plasma concentration was greater than the increase in muscle concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Medium-chain triglycerides induce alterations in carnitine metabolism.

Medium-chain triglycerides are generally assumed to be metabolized independently of carnitine. The effects of infusing medium-chain triglycerides on plasma concentrations of carnitine derivatives and beta-hydroxybutyrate were studied in four healthy male adults. Glucose and amino acids were infused alone for 3 h, then continued for another 5.5 h together with a lipid emulsion containing only long-chain triglycerides or a 50:50% (wt/wt) mixture of medium-chain and long-chain triglycerides. During the fat-free infusion, the concentration of free carnitine rose, whereas the level of acylcarnitines decreased. Infusion of the mixed emulsion over 5.5 h reduced free carnitine to lower values (32.4 +/- 4.7 mumols/l) than long-chain triglycerides infusion (44.4 +/- 2.7 mumol/l). By contrast, the plasma concentrations of short-chain acylcarnitine (12.1 +/- 3.3 vs. 5.4 +/- 1.9 mumols/l; P less than 0.01) and of beta-hydroxybutyrate (93 +/- 32 vs. 47 +/- 14 mumols/l; P less than 0.01) became significantly higher with the mixed emulsion than with long-chain triglycerides. This suggests that intravenous medium-chain triglycerides are not metabolized independently of carnitine. Carnitine may play an important role in removing acyl and acetyl groups from mitochondria and in restoring the intramitochondrial CoA level. Fat substrates are converted into compounds that might be utilized by tissues that do not normally oxidize fatty acids, creating an interorgan energy cycle.

3-Hydroxybutyric Acid