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Ineffective erythropoiesis in mutant mice with deficient pyruvate kinase activity.

OBJECTIVE: A deficiency of pyruvate kinase (PK) is the most common cause of hereditary nonspherocytic anemia due to glycolytic enzyme defects. Red cells are poorly deformable due to adenosine triphosphate depletion in individuals with a PK deficiency and are destroyed in the microcirculation of the reticuloendothelial system, leading to extravascular hemolysis. The pathophysiology of PK deficiency has been widely studied in PK-deficient mice (PK-1(slc)). We examined the effects of a PK deficiency on erythroid progenitor maturation using these mice. MATERIALS AND METHODS: The appearance of apoptotic cells in spleen of PK-1(slc) mice was examined by terminal deoxynucleotidyl-transferase-mediated dUTP nick-end labeling (TUNEL) staining. We also assayed hematopoietic stem cell colony formation in vitro in the spleen of PK-1(slc) mice, to investigate erythropoiesis, and annexin V binding, as a measure of apoptotic cells in constitutive erythroid colonies, to evaluate the maturation of erythroid progenitors. RESULTS: The number of hematopoietic progenitors including colony-forming unit erythroids, burst-forming unit erythroids (BFU-E), colony-forming unit granulocyte-macrophages, and multilineage colony-forming units in the spleens of PK-1(slc) was remarkably increased indicating hematopoiesis, and enhanced erythropoiesis in particular. TUNEL assays identified apoptotic cells in the splenic red pulp of the PK-1(slc) mice. Two-color flow cytometry detected apoptotic cells among anti-TER119-positive cells, suggesting that apoptotic cells were of erythroid lineage. Cells undergoing apoptosis were detected in cultures of BFU-E generated from bone marrow cells of PK-1(slc) mice. CONCLUSIONS: The results in this study indicate that the metabolic disturbance in PK deficiency alters not only the survival of red cells but also the maturation of erythroid progenitors, resulting in ineffective erythropoiesis.

Animals↗

Regulation of the expression of the L-type pyruvate kinase gene in adult rat hepatocytes in primary culture.

Hepatocytes isolated from adult fasted rats and cultured in the presence of thyroid hormones, glucocorticoids, and in a serum-free medium conserve the essentials of their differentiated function and hormonal sensitivity for at least 1 week. In these cells, the gene for L-type pyruvate kinase is expressed only when glucose and insulin are present together, each of them being inactive by itself. Inhibition of the expression of the L-type pyruvate kinase gene which occurs when glucose and/or insulin are removed from the culture medium is not associated with accumulation of the phosphoenolpyruvate carboxykinase mRNA, which argues against the involvement of intracellular cyclic AMP in this phenomenon. Rather, a transcriptional activator, derived from carbohydrate metabolism and accumulating in the presence of insulin, seems to be needed to support the expression of the L-type pyruvate kinase gene. Glucagon, in vitro as in vivo, inhibits production of the L-type pyruvate kinase mRNAs. In addition to their roles on the production of these mRNAs, glucose and insulin on the one hand and glucagon on the other have profound effects on the stability of the L-type pyruvate kinase messengers: the half-life of the mRNA whose production has been blocked by actinomycin D is 1 h in the presence of glucagon and 24 h in the presence of glucose and insulin. Glucagon and glucose/insulin partially antagonize each other's effect on mRNA stability.

Animals↗

Congenital hemolytic anemia in the Basenji dog due to erythrocyte pyruvate kinase deficiency.

Congenital hemolytic anemia in the Basenji dog resembles pyruvate kinase (PK) deficiency in man as it is characterized by an abbreviated erythrocyte life span, an intense reticulocytosis, type II autohemolysis and splenomegaly. Glucose utilization and lactate production were inadequate with respect to the immature cell population. Analysis of enzymes involved in erythrocyte glycolysis revealed a deficiency of pyruvate kinase.

Anemia, Hemolytic, Congenital↗

Estimation of the relative contributions of enhanced production of oxalacetate and inhibition of pyruvate kinase to acute hormonal stimulation of gluconeogenesis in rat hepatocytes. An analysis of the effects of glucagon, angiotensin II, and dexamethasone on gluconeogenic flux from lactate/pyruvate.

Hepatocytes, isolated from fasted rats, were incubated with graded concentrations of lactate and pyruvate, at a mean constant ratio of 10-13:1, to alter systematically the concentrations of gluconeogenic intermediate metabolites and rates of glucose production. By analyzing glucose production rates as a function of corresponding concentrations of extracellular pyruvate, cytosolic oxalacetate, and cellular 3-phosphoglycerate in the presence and absence of hormones and assuming no primary activation of phosphoenolpyruvate carboxykinase, estimates were made of the relative contributions of stimulation of formation of cytosolic oxalacetate and inhibition of pyruvate kinase to hormonal stimulations of gluconeogenesis. Addition of dexamethasone, glucagon, or angiotensin II did not cause a shift in the relationship between cellular 3-phosphoglycerate concentrations and rates of glucose production, indicating that there was no effect of these agents on the reactions involved in conversion of phosphoenolpyruvate to glucose. All three agents shifted the relationships between rates of glucose production and both cytosolic oxalacetate and extracellular pyruvate. The following conclusions were drawn from computer analyses of these results. At low concentrations of pyruvate, stimulation of oxalacetate production and pyruvate kinase inhibition were approximately equally contributory to the overall stimulations of gluconeogenesis by angiotensin II and dexamethasone. At higher pyruvate concentrations, pyruvate kinase inhibition by angiotensin II played a greater role, accounting for 90% of the overall stimulation. For dexamethasone, as the pyruvate concentration was increased, stimulation of gluconeogenesis resulting from enhanced formation of oxalacetate diminished as did overall stimulation of gluconeogenesis. Glucagon addition resulted in an inhibition of pyruvate kinase flux that accounted for 75% of the hormone's overall effect at low pyruvate concentrations; this increased to 95% at high pyruvate concentrations.

Adenosine Diphosphate↗

Pyruvate kinase and the "high ATP syndrome".

The erythrocytes of a patient with the so-called "high ATP syndrome" were characterized by a high ATP content and low 2,3-diphosphoglycerate level. The pyruvate kinase activity was specifically increased (about twice the normal level). After separation of the erythrocytes according to age by discontinuous Percoll density centrifugation, the pyruvate kinase activity was found to be increased in all Percoll fractions. Pyruvate kinase of the patient's cells was characterized by a decreased K0.5 for the substrate phosphoenolpyruvate and no inhibition by ATP. The Michaelis constant (Km) value for ADP, the nucleotide specificity, the thermostability, pH optimum, and immunological specific activity were normal. It is concluded that the high pyruvate kinase activity is due to a shift in the R(elaxed) in equilibrium T(ight) equilibrium to the R(elaxed) form.

2,3-Diphosphoglycerate↗

Use of 31P nuclear magnetic resonance spectroscopy and 14C fluorography in studies of glycolysis and regulation of pyruvate kinase in Streptococcus lactis.

High-resolution 31P nuclear magnetic resonance spectroscopy and 14C fluorography have been used to identify and quantitate intermediates of the Embden-Meyerhof pathway in intact cells and cell extracts of Streptococcus lactis. Glycolysing cells contained high levels of fructose 1,6-bisphosphate (a positive effector of pyruvate kinase) but comparatively low concentrations of other glycolytic metabolites. By contrast, starved organisms contained only high levels of 3-phosphoglycerate, 2-phosphoglycerate, and phosphoenolpyruvate. The concentration of Pi (a negative effector of pyruvate kinase) in starved cells was fourfold greater than that maintained by glycolysing cells. The following result suggest that retention of the phosphoenolpyruvate pool by starved cells is a consequence of Pi-mediated inhibition of pyruvate kinase: the increase in the phosphoenolpyruvate pool (and Pi) preceded depletion of fructose 1,6-bisphosphate, and reduction in intracellular Pi (by a maltose-plus-arginine phosphate trap) caused the restoration of pyruvate kinase activity in starved cells. Time course studies showed that Pi was conserved by formation of fructose 1,6-bisphosphate during glycolysis. Conversely, during starvation high levels of Pi were generated concomitant with depletion of intracellular fructose 1,6-bisphosphate. The concentrations of Pi and fructose 1,6-bisphosphate present in starved and glycolysing cells of S. lactis varied inversely. The activity of pyruvate kinase in the growing cell may be modulated by the relative concentrations of the two antagonistic effectors.

Carbon Radioisotopes↗

The cooperative binding of fructose-1,6-bisphosphate to yeast pyruvate kinase.

The cooperative binding of the allosteric activator fructose-1,6-bisphosphate [Fru(1,6)P2] to yeast pyruvate kinase was investigated by equilibrium dialysis and fluorescence quench titration. The results show that yeast pyruvate kinase binds four molecules of Fru(1,6)P2 per tetramer and the observed fluorescence quench follows the binding of the ligand and not the cooperative T to R state transition. Additionally it is shown that the binding of Fru(1,6)P2 to yeast pyruvate kinase is compatible with the model of cooperativity that has been proposed and incorporates an intermediate state, R', with properties between those of the T and R states.

Allosteric Regulation↗

Yeast pyruvate kinase: essential lysine residues in the active site.

1. Yeast pyruvate kinase was purified to near homogeneity and subjected to chemical modification by trinitrobenzenesulfonate and by P1, P2-bis (5' pyridoxal) diphosphate. 2. Labeled peptides were isolated and their amino acid composition was determined. 3. The results suggest that yeast pyruvate kinase has an essential lysine residue, and that this residue is in a location equivalent to an essential lysine described in the muscle enzyme. 4. Protection experiments indicate that this lysine is located at the nucleotide binding site.

Amino Acids↗

[The isoenzyme composition of liver pyruvate kinase from hens in ontogeny].

Only one isozyme M2 of pyruvate kinase was found in the liver of hens at all stages of embryonic and postembryonic development. No analogue to isozyme L from the liver of mammals was found. During embryogenesis and postnatal life, isozyme M2 is presented by two forms which differ in pI values. Throughout embryonic and postembryonic development, pyruvate kinase is presented by two forms which differ in their substrate affinity.

Animals↗

Alanine prevents the inhibition of pyruvate kinase activity caused by tryptophan in cerebral cortex of rats.

Hypertryptophanemia is a rare inherited metabolic disorder probably caused by a blockage in the conversion of tryptophan to kynurenine, accumulating tryptophan and some of its metabolites in plasma and tissues of affected patients. The patients present mild to moderate mental retardation with exaggerated affective responses, periodic mood swings, and apparent hypersexual behavior. Pyruvate kinase catalyses a critical step in the glycolysis pathway, the main route that provides energy to brain functioning. The main objective of the present study was to determine pyruvate kinase activity in brain cortex of rats subjected to acute chemically induced hypertryptophanemia. The effect of alanine administration to the treated rats on the enzyme activity was also investigated. We also studied the in vitro effect of the two amino acids on pyruvate kinase activity in the brain cortex of nontreated rats. The results indicated that tryptophan inhibits pyruvate kinase in vitro and in vivo and that alanine prevents this inhibitory effect on the enzyme activity. Considering the crucial role pyruvate kinase plays in glucose metabolism in brain, it is possible that inhibition of this enzyme activity may contribute to the brain damage characteristic of this disease. Further studies will be necessary to evaluate possible benefits of alanine administration to the patients affected by hypertryptophanemia.

Alanine↗

Interrelationships and functions of the pyruvate kinase isozymes and their variant forms: a review.

The relationships among and the properties of the pyruvate kinase isozymes are reviewed, emphasizing their potential role in carcinogenesis. Particular consideration is given to evaluation of the concept that the three major nonreadily interconvertible forms are the products of distinct genes, the relationship of these forms to additional separable forms of pyruvate kinase, the types and possible functions of interconvertible forms of the major isozymes, and mechanisms affecting the genetic expression of the isozymes. Emphasis is placed upon the apparent derepression of the fetal isozyme in hepatomas and the influence of neoplasms and their extracts on the expression of pyruvate kinase in the liver of host animals.

Animals↗

Subunit dissociation and inactivation of pyruvate kinase by hydrostatic pressure oxidation of sulfhydryl groups and ligand effects on enzyme stability.

The effect of hydrostatic pressure on the stability of tetrameric rabbit muscle pyruvate kinase was investigated by enzyme activity measurements, size-exclusion chromatography, circular dichroism and fluorescence spectroscopies. Under nonreducing conditions, enzyme activity was irreversibly inhibited by increasing pressure and was completely abolished at 350 MPa. Inhibition was dependent on the concentration of pyruvate kinase, indicating that it was related to pressure-induced subunit dissociation. Size-exclusion chromatography of pressurized samples confirmed a decrease in the proportion of tetramers and an increase in monomers relative to native samples. Addition of dithiothreitol immediately following pressure release led to full recovery of both enzyme activity and of native tetramers. Furthermore, no irreversible inhibition of pyruvate kinase was observed if pressure treatment was carried out in the presence of dithiothreitol. These data suggest that pressure-dissociated monomers undergo conformational changes leading to oxidation of sulfhydryl groups, which prevents correct refolding of native tetramers on decompression. These conformational changes are relatively subtle, as indicated by the lack of significant changes in far-UV circular dichroism and intrinsic fluorescence emission spectra of previously pressurized samples. The effects of various physiological ligands on the pressure stability of pyruvate kinase were also investigated. A slight protection against inhibition was observed in the simultaneous presence of K+, Mg2+ and ADP. Both phosphoenolpyruvate and the allosteric inhibitor, phenylalanine, caused marked stabilization against pressure, suggesting significant energy coupling between binding of these ligands and stabilization of the tetramer.

Animals↗

Comparison of the subunit and primary structures of the pyruvate kinases from rabbit and sturgeon muscles.

The structures of the pyruvate kinases isolated from rabbit and sturgeon muscles were compared. Both enzymes are composed of subunits of 56000 mol.wt. Amino acid compositions of the two enzymes are similar, but not identical. Examination of the peptides produced by CNBr cleavage demonstrated that there are at least some highly homologous regions in the two proteins. There are only two replacements between an 18-residue portion of the polypeptide chain of rabbit muscle pyruvate kinase and a portion of the polypeptide chain of the enzyme isolated from sturgeon muscle.

Amino Acid Sequence↗

Biochemical characterization of three mutant isozymes of erythrocyte pyruvate kinase: PK-"Gainesville," PK-"San Juan," and PK-"Cape Canaveral".

Pyruvate kinase was partially purified from erythrocytes of three unrelated, nonconsaguineous patients with chronic hemolytic anemia of differing clinical severities. Characterization of the defective PK isozymes by internationally standardized criteria indicated that one (PK-"Gainesville") had severely impaired substrate affinity, another (PK-"San Juan") had markedly reduced residual activity, and the third (PK-"Cape Canaveral") had a combination of milder defects. Each appears representative of subsets emerging from the heterogeneous molecular defects that make up pyruvate kinase deficiency.

Adenosine Triphosphate↗

The effect of temperature on catalytic and regulatory functions of pyruvate kinases of the rainbow trout and the antarctic fish Trematomus bernacchii.

1. The effects of temperature on the catalytic and regulatory properties of pyruvate kinases from the temperate-zone rainbow trout and the Antarctic fish Trematomus bernacchii were examined. 2. The K(m) value of pyruvate kinase for one of its two substrates, phosphoenolpyruvate, is temperature-dependent, and is lowest at temperatures that closely coincide with the habitat temperatures of the two fishes. 3. Two regulatory functions of pyruvate kinase, feedforward activation by fructose diphosphate and feedback inhibition by ATP, are temperature-independent. Enzyme-ADP interaction is also temperature-independent. 4. It is concluded that enzyme-substrate and enzyme-modulator interactions are important factors in short-term and in evolutionary adaptations by poikilotherms to changes in temperature. Though the K(m) for substrate may vary in apparently adaptive manners, the regulatory functions of an enzyme appear to be unchanged over the range of temperatures experienced by the organism in Nature.

Adaptation, Physiological↗

Bifidobacteria identification based on 16S rRNA and pyruvate kinase partial gene sequence analysis.

The lack of a simple and rapid identification system for Bifidobacterium species makes them difficult to use in industrial applications. To obtain valuable discriminating factor, we studied different strains, and human isolates by two molecular taxonomy methods. First method was based on chrono-differentiation. A metabolic gene (pyruvate kinase) was chosen to be used as a systematic discriminating factor. A comparison of about 40 pyruvate kinase protein sequences allowed us to synthesize two oligonucleotides that were able to amplify a fragment of this corresponding gene in our strains. Based on these partial pyruvate kinase gene sequences, several clusters could be identified. The second method used in this study was based on 16S rRNA sequences analysis. We compared sequences present in GenBank database, and this allowed to separate bifidobacteria species into different clusters. They were different from those obtained with partial pyruvate kinase gene sequences analysis. So, by combining both methods, we were able to identify our isolates, when only 10% of them could be strictly identified using the 16S rRNA method. Moreover, pyruvate kinase analysis allowed to differentiate very ambivalent groups such as B. animalis/B. lactis or B. infantis/B. longum, but created different clusters for B. infantis species group, questioning on the homogeneity of this species.

Journal Article↗

Activation of phosphofructokinase and pyruvate kinase by 6 phosphogluconate in chicken liver (Gallus domesticus): no evidence for a regulatory role.

Phosphofructokinase and pyruvate kinase in crude extracts of chick liver were activated by 6 phosphogluconate at subsaturating concentrations of their respective substrates. The apparent Ka for phosphofructokinase was 0.79 mM and for pyruvate kinase 0.44 mM. Total pentose phosphate dehydrogenase activity was low in the livers of both fed and starved chicks. Hepatic 6 phosphogluconate concentration was too low to be measured accurately by a conventional spectrophotometric method. It is concluded that the concentration of 6 phosphogluconate is too low for it to have a role in the regulation of phosphofructokinase and pyruvate kinase activities in chicken liver.

Animals↗