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Biomedical subjects

G Jacobasch

Publications and source records attributed to G Jacobasch.

At least 73 records · Page 4Linked to original sources

Mathematical model of pyruvate kinase of chicken erythrocytes.

The PK in mammals is different with regard to molecular structure and kinetic properties from PK in avian hepatocytes (1). Our studies show that the same isoenzyme of PK occurs both in red blood cells and hepatocytes. The PK of human erythrocytes belong to the L-type, that of chicken erythrocytes to the K-type. Both isoenzymes are characterized by cooperative regulation. Allosteric behavior is more pronounced for the chicken enzyme than for that of human erythrocytes. Chicken erythrocyte PK is activated by serine and exhibits a high FDP affinity.

Animals↗

Metabolism of the hexose monophosphate shunt in glucose-6-phosphate dehydrogenase deficiency and closely interrelated reactions.

The metabolic changes of red blood cells from 25 patients with chronic hemolytic anemia caused by G6PD deficiency were investigated. The average G6PD activity exhibited 5 per cent of the normal control. The glucose oxidation was in most cases reduced even by 50 per cent. Three groups could be distinguished according to their degree of methylene blue stimulation of the oxidative pentose phosphate pathway. These results are in agreement with changes of the kinetic constants for NADP, NADPH and G6P, respectively. The filtrability of red blood cells decreased in all cases of G6PD deficiency but no correlation was found with the survival time. First results of a preventive medication with D-L-alpha-tocopherol let assume a reduction of chronic hemolysis.

Anemia, Hemolytic↗

Identification of mutants of pyruvate kinase from red blood cells by means of trypsinization, electrophoresis, kinetic properties and immunological methods.

Enzymopathies of pyruvate kinase (PK) are characterized by polymorphism. 11 different mutants of PK were detected in 12 analysed cases. The frequency of double heterozygotes of the PK deficiency is very high. The mutant forms have been identified by electrophoretic, kinetic and immunologic methods in red blood cells of patients and members of their families. The effect of trypsin has greatly increased the sensitivity of the differentiation procedures. Differences in activity and quality of the proteolytic systems in liver and kidney in comparison to red blood cells are responsible for inactivation and degradation of PK mutants in both organs. Homozygotes and double heterozygotes show clinic manifestations. The rigidity of red blood cells increases with the severity of the nonspherocytic haemolytic anaemia.

Erythrocytes↗

New stable mutant (Gd(-) variants: G6PD Tashkent and G6PD Nucus. Molecular basis of hereditary enzyme deficiency.

This paper represents studies on the molecular basis of G6PD deficiency in erythrocytes of 4 hemizygote patients. In all cases G6PD deficiency was due to an abnormal kinetic and (or) physico-chemical characteristics of the mutant enzymes. Two of 4 variants were characterized as G6PD EL Fayoum like (unstable, class 2). The other two are new variants: G6PD Tashkent (low Ki by NADPH, class 3) and G6PD Nukus (Km for G6P 127 microM, class 2). For the new mutant Gd(-) stable variants the amount of G6PD in total red cell population found immunologically was similar to the normal level. Stimulation of the pentose phosphate pathway (PPP) of G6PD Nucus erythrocytes insignificantly increased the rate of glucose consumption while in the case of G6PD Tashkent methylene blue raised the rate of PPP to half of the maximal rate of stimulated normal red cells.

Erythrocytes↗

[Biochemical bases of parenteral nutrition].

This outlines of normal metabolism and nutrition are summarized as well as some of their deviations. The differences between parenteral and enteral nutrition are discussed as well as the constituents of the diet to the extent that they are of significance for total parenteral nutrition.

Amino Acids↗

[Identification of pyruvate kinase variants from red blood cells using trypsinization and electrophoresis].

Enzymopathies of pyruvate kinase (PK) are characterized by polymorphism. Nine distinct variants of the L-type from 10 patients suffering from nonspherocytic haemolytic anaemia have been identified by electrophoretic and kinetic methods. Typical changes of the electrophoretic mobility and kinetic properties of the L-type and K-type of PK can be produced by incubation of cytolysates and tissue homogenates in the presence of trypsin. After trypsinization the three distinct forms of the L-type from liver and erythrocytes show identical mobility. Trypsinization of haemolysates has proved to be a diagnostic tool for the differentiation of PK variants. The results also allow to distinguish whether the mutation is located in the region of the peptide chain which is split off by trypsin or not. In three cases the occurrence of two instead of one enzyme form after trypsinization indicates a double heterozygote heredity of PK-deficiency. The appearance of the K-type isoenzyme of PK in red blood cells may be considered as a physiological event during a limited period of erythropoiesis. The K-isoenzyme was found only in samples of red blood cells containing erythroblasts. One of the patients has shown a still unknown form of PK. The properties of this form resembled those of the major part of PK from human placenta.

Anemia, Hemolytic, Congenital Nonspherocytic↗

[Enzyme deficient non-spherocytic hemolytic anemias].

Enzymopathies are described concerning the enzymes of the oxidative pentose phosphate pathway including the glutathion system, of the majority of glycolytic enzymes as well as of the ATPase, adenylate kinase and pyrimidine-5'-nucleotidase. The distribution and the frequency of the enzymopathies differ strongly in the various regions of the world. Glucose-6-phosphate dehydrogenase and pyruvate kinase show the highest frequency. The detected polymorphism of the pathological enzyme variants is one of the reasons for the fact that no correlation between the decrease of the catalytic activity and the severity of the anaemias has been found. For the identification of risk-groups more precise methods are necessary. Till now the detailed relationships between enzymopathy and non-spherocytic haemolytic anaemias are not clarified. Furthermore the molecular mechanism of the instability of pathological enzyme variants is not yet clear.

Adenosine Triphosphate↗

Spectroscopic studies on effector-induced and substrate-induced conformation changes of phosphofructokinase.

The interaction of phosphofructokinase with NH4+, AMP, ATP, citrate, MgATP or fructose 6-phosphate, and in part with their mixtures forming either binary or ternary complexes has been studied by means of ultraviolet difference spectroscopy and circular dichroism spectroscopy in the wavelength range 265-300 nm with the aim of characterizing the conformational corollaries of the ligand effects on phosphofructokinase. The positive as well as the negative effectors change phosphofructokinase conformation in different ways, not easily interpretable in terms of one active and one inactive enzyme conformation. The spectroscopic equivalents of phosphofructokinase conformation changes resulting from catalytic activity are similar to those produced by the reaction products. The ligand concentration-dependent changes of absorption differences in the tryptophyl, tyrosyl and phenylalanyl region parallel each other, i.e. the interactions of the ligands with phosphofructokinase are not confined to specific aromatic side chains, but involve conformation changes of the large domains of the protein. ATP affinity to the enzyme shows temperature-dependent biphasic changes so that ATP binding appears to be either an entropy-driven or enthalpy-driven process. The dissociation constants of the ligands derived from spectroscopic titration of binary complex formation are comparable to those calculated from kinetic experiments. MgATP and fructose 6-phosphate each alone change phosphofructokinase conformation by binary complex formation in keeping with a random order of reaction sequence.

Adenosine Monophosphate↗

A mathematical model for the influence of anionic effectors on the phosphofructokinase from rat erythrocytes.

The influence of the positive effectors AMP, sulphate, glucose 1,6-bisphosphate and the negative effector 2,3-bisphosphoglycerate on rat erythrocyte phosphofructokinase has been investigated. The kinetic data have been fitted to the Monod-Wyman-Changeux model as well as to a model based on a closed association-dissociation equilibrium. The application of the fitting procedure yeilds for both models a good corresponding between theoretical and experimental data and equal results with respect to the action of the effectors on the enzyme. The corresponding dissociation constants for the binding of the positive effectors to the active state are: AMP 35 micronM, sulphate 0.43 mM and glucose 1,6-bisphosphate 15 micronM. 2,3-Bisphosphoglycerate as in inhibitor stabilizes the inactive state (dissociation constant: 1.4 mM). A preliminary discrimination between the Monod-Wyman-Changeux model and the association-dissociation model has been attempted.

Adenosine Monophosphate↗

[Control of glycolysis in magnesium deficiency: studies on intact red cells and hemolysates].

The behaviour of glycolytic flux and glycolytic metabolic concentrations was studied under conditions of magnesium deficiency. The Mg-deficiency was produced in whole animals (rats) by feeding a diet almost completely free of Mg and in hemolysates of men by the addition of a chelating agent. The results show that the decrease of the free Mg-level is diminished by partial destruction of ATP and 2,3-DPG. The analysis of the control strength of the overall flux leads to the conclusion that the decrease of the glycolytic rate is caused by an inhibition of the hexokinase-phosphofructokinase-control system. The decrease of the MgATP-Complex and free Mg++-level explains the diminished phosphorylation of glucose by the hexokinase. The ATP-inhibition of the phosphofructokinase is amplified by a small increase of free ATP-concentration and a simultaneous decrease of the Fru-6P-level. The increase of the PEP-level is caused by the diminished free Mg++ and MgATP-complex and does not demonstrate a larger control strength of the pyruvate kinase.

Adenosine Diphosphate↗

[Glucose-6-phosphate dehydrogenase deficiency of erythrocytes in the GDR].

34 persons with G-6-PD deficiency were diagnosed, and the pathological enzyme-variants of red blood cells were characterized according to the recommendations of WHO. We conclude from the differing residual G-6-PD-activities in red blood cells of the propositi and the differing reactivity of the enzyme in kinetic and physicochemical characterizations that a multiple variety of rare pathological G-6-PD variants exists in the GDR. Using the estimated enzymeparameters it was not possible in all cases to compare directly the newly demonstrated G-6-PD variants with cases already described in the literature. In addition, the differing combinations of parameters render a classification more difficult.

Electrophoresis↗

[Detection of female heterozygous glucose-6-phosphate dehydrogenase deficiency].

Diagnostics of heterozygotes are required for population studies, for the detection and consultation of persons with G-6-PD deficiency prone to hemolysis. The diagnostics of heterozygous females with the corresponding trait are problematic in families without hemizygous patients. 1. The determination of the activity is only applicable to the differentiation between heterozygotes and homozygotes if the activities are below the reference range. Heterozygous G-6-PD deficiency with normal activity cannot be identified by this method. 2. Existence of G-6-PD defects is demonstrated by mosaicism even in case of normactivity (Tönztest). 3. Incubation with and without NADP of stroma-free hemolysates involving heat labile enzyme mutants results in a marked decrease of activity within 20 min at 46 degrees C. 4. Electrophoresis on Cellogel demonstrates changes of charge in the mutated enzyme. 5. Family examination verifies suspicion of the heterozygous trait. A combination of parameters is recommended to obtain an improvement in the detection of persons with the heterozygous trait.

Electrophoresis↗

[Energy metabolism of erythrocytes in pyruvate kinase enzymopathies].

Until now pyruvate kinase enzymopathies have been described only for red blood cells. On the basis of these results special structural properties of the erythrocyte PK was assumed, which are not yet totally established. PK defects may cause a nonspherocytic hemolytic anemia. This enzymopathy is characterized by a polymorphism, which is expressed in more than 5 different pathological variants. Up to now 16 cases of PK deficiency have ben diagnozed in the GDR. The following parameters are used for the characterization of the PK: the PEP-dependance, the inhibition by ATP and alanine, the specificity to nucleotides, the stability to temperature and urea and the maturation dependence. Two pathological variants of the PK with a decreased PEP-affinity are described. Furthermore the differences in the energy metabolism of the red blood cells of these two patients under aerobic and anaerobic conditions are discussed.

Adenosine Triphosphate↗

A comparison of the influence of potassium and ammonium ions on the phosphofructokinases from rabbit muscle and rat erythrocytes.

Phosphofructokinases from rat erythrocytes and rabbit muscle have been compared in their kinetic behavior with respect to monovalent cation activation and ATP inhibition. Both ammonium and potassium ions affect the muscle enzyme in a two-fold manner: they act both as activators and effectors. On the other hand only ammonium exerts the two-fold effects on the erythrocyte enzyme, while the potassium ions activate without affecting cooperativity. The lower ATP inhibition of muscle phosphofructokinase may be partially explained by the action of potassium ions on the cooperative behavior of the enzyme. The differences between the phosphofructokinases from erythrocytes and muscle in the potassium type-II activation and ATP inhibition represent an organ specifity. Furthermore, the inhibition constants for 2, 3-bisphosphoglycerate differ by 10-fold between the two enzymes.

Adenosine Triphosphate↗

On the influence of fructose-6-phosphate, ammonium, ATP and AMP on the conformation of the phosphofructokinase from rabbit muscle.

By means of circular dichroism measurements in the range from 210-240 nm and 250-300 nm it is shown that conformational changes of the phosphofructokinase from rabbit muscle correlate with the action of effectors on the enzyme. The postulated active and inactive states differ in the secondary structure. Addition of activators causes a conformational change which is interpreted as the transition of the inactive into the active state. At 210-240 nm no reversion could be observed but at 250-300 nm there are some indications for at least partial reversion.

Adenosine Triphosphate↗