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Lack of evidence for a pyruvate kinase isozyme shift in hepatocytes of the regenerating rat liver.

1. Pyruvate kinase isozyme shift in a regenerating rat liver was studied. Rats were subjected to a 70% hepatectomy and the liver homogenate or hepatocyte preparations were obtained from the regenerating liver. 2. Using thin layer polyacrylamide gel electrophoresis, liver homogenates from an intact normal rat appeared to contain the L-type isozyme in the greatest number and M2-type to a lesser extent. 3. The ratio of the M2- to L-type increased in the preparations obtained from the regenerating liver. 4. In the hepatocyte preparations prepared from a regenerating rat liver by the conventional method, a small amount of M2-type isozyme was detected. 5. However, the M2-type isozyme was hardly detected in the highly purified hepatocyte preparations prepared using Percoll. 6. Similar results were obtained by separation of the enzyme by DEAE cellulose column chromatography. 7. These results suggest that there is no pyruvate kinase isozyme shift from L- to M2-type in hepatocytes in the course of regeneration. 8. The increased M2-type isozyme in the regenerating rat liver is considered to originate from nonparenchymal cells.

Animals↗

Domain interaction in rabbit muscle pyruvate kinase. II. Small angle neutron scattering and computer simulation.

The effects of ligands on the structure of rabbit muscle pyruvate kinase were studied by small angle neutron scattering. The radius of gyration, RG, decreases by about 1 A in the presence of the substrate phosphoenolpyruvate, but increases by about the same magnitude in the presence of the allosteric inhibitor phenylalanine. With increasing pH or in the absence of Mg2+ and K+, the RG of pyruvate kinase increases. Hence, there is a 2-A difference in RG between two alternative conformations. Length distribution analysis indicates that, under all experimental conditions which increase the radius of gyration, there is a pronounced increase observed in the probability for interatomic distance between 80 and 110 A. These small angle neutron scattering results indicate a "contraction" and "expansion" of the enzyme when it transforms between its active and inactive forms. Using the alpha-carbon coordinates of crystalline cat muscle pyruvate kinase, a length distribution profile was calculated, and it matches the scattering profile of the inactive form. These observations are expected since the crystals were grown in the absence of divalent cations (Stuart, D. I., Levine, M., Muirhead, H., and Stammers, D. K. (1979) J. Mol. Biol. 134, 109-142). Hence, results from neutron scattering, x-ray crystallographic, and sedimentation studies (Oberfelder, R. W., Lee, L. L.-Y., and Lee, J.C. (1984) Biochemistry 23, 3813-3821) are totally consistent with each other. With the aid of computer modeling, the crystal structure has been manipulated in order to effect changes that are consistent with the conformational change described by the solution scattering data. The structural manipulation involves the rotation of the B domain relative to the A domain, leading to the closure of the cleft between these domains. These manipulations resulted in the generation of new sets of atomic (C-alpha) coordinates, which were utilized in calculations, the result of which compared favorably with the solution data.

Algorithms↗

Multienzymic nature of pyruvate kinase during development of Hymenolepis diminuta (Cestoda).

H. diminuta at different stages of development contained as many as five pyruvate kinase isozymes. Four of these were unusually sensitive to allosteric activation by fructose-1,6-P2. One isozyme which occurred only in adults or near-adults was insensitive but had a relatively low Km. All were inhibited by ATP and Ca2+, none by alanine, and the pH optimum was unaffected by fructose-1,6-P2. The five isozymes were present in gravid or reproductively active proglottids. Two of them occurred after eight days growth in the rat intestine, and three after four days. These three were also present in the immature, anterior proglottids of adult parasites. Hexacanth larvae from gravid proglottids, as well as cysticercoids developing from these larvae in Tenebrio molitor, possessed only two isozymes. It was inferred from information on tissue concentrations of ADP, ATP, phosphoenolypyruvate (PEP) and on K0.5S and Km that competition between pyruvate kinase and PEP carboxykinase is probably controlled by fructose-1,6-P2 concentrations. Since H. diminuta is an obligatory fermenter in which gluconeogenesis is minimal, the probable function of its L-type pyruvate kinases is to control the specific composition of lactic, acetic and succinic acid mixtures that are excreted at different stages of development.

Adenosine Diphosphate↗

Phosphorylation of type-L pyruvate kinase in intact hepatocytes. Localisation of the phosphorylation site in response to both glucagon and the Ca2+-linked agonist phenylephrine.

Pyruvate kinase is one of the enzymes which can be phosphorylated by stimulation of the cell with either glucagon or Ca2+-linked hormones. Whether these two classes of hormones phosphorylate the same site on the enzyme is unclear. Our results demonstrate that isolation of [32P]phosphorylated type-L pyruvate kinase from glucagon-treated hepatocytes followed by aspartyl-prolyl cleavage yields a [32P]phosphorylated peptide of Mr 17,000. This fragment is also phosphorylated in response to the Ca2+-mediated agonist phenylephrine.

Adenylyl Cyclases↗

Oxalacetate decarboxylase activity in muscle is due to pyruvate kinase.

The enzyme from cod fish muscle that catalyzes the irreversible decarboxylation of oxalacetate and is homogeneous by several criteria contains very significant pyruvate kinase activity. For every unit of decarboxylase activity (0.90 unit/mg) there are 235 units of pyruvate kinase activity (212 units/mg). The inability to separate the two activities by a variety of physical techniques indicates that both are due to a single enzyme protein. Improtantly, the two activities appear to take place at the same or overlapping sites on the enzyme. Phosphoenolpyruvate and 4-ethyloxalacetate are strong linear competitive inhibitors of the decarboxylase activity with respect to oxalacetate having dissociation constants of 3.2 and 10.2 muM, respectively, while 4-ethyloxalacetate is a linear competitive inhibitor of the pyruvate kinase activity with respect to phosphoenolpyruvate, Ki - 13.5 muM. In addition, both activities exhibit sigmoidal kinetics for substrates. The differential influence of effectors on substrate cooperativity for the two reactions indicates that the decarboxylase reaction may be an important tool for studying allosteric mechanisms in this enzyme.

Animals↗

Pyruvate kinase revisited: the activating effect of K+.

For more than 50 years, it has been known that K(+) is an essential activator of pyruvate kinase (Kachmar, J. F., and Boyer, P. D. (1953) J. Biol. Chem. 200, 669-683). However, the role of K(+) in the catalysis by pyruvate kinase has not been totally understood. Previous studies without K(+) showed that the affinity of ADP-Mg(2+) depends on the concentration of phosphoenolpyruvate, although the kinetics of the enzyme at saturating K(+) concentrations show independence in the binding of substrates (Reynard, A. M., Hass, L. F., Jacobsen, D. D. & Boyer, P. D. (1961) J. Biol. Chem. 236, 2277-2283). Here, we explored the kinetics of the enzyme with and without K(+). The results show that without K(+), the kinetic mechanism of pyruvate kinase changes from random to ordered with phosphoenol-pyruvate as first substrate. V(max) with K(+) was about 400 higher than without K(+). In the presence of K(+), the affinities for phosphoenol-pyruvate, ADP-Mg(2+), oxalate, and ADP-Cr(2+) were 2-6-fold higher than in the absence of K(+). This as well as fluorescence data also indicate that K(+) is involved in the acquisition of the active conformation of the enzyme, allowing either phosphoenolpyruvate or ADP to bind independently (random mechanism). In the absence of K(+), ADP cannot bind to the enzyme until phosphoenolpyruvate forms a competent active site (ordered mechanism). We propose that K(+) induces the closure of the active site and the arrangement of the residues involved in the binding of the nucleotide.

Enzyme Activation↗

Key residues in the allosteric transition of Bacillus stearothermophilus pyruvate kinase identified by site-directed mutagenesis.

The structural gene for pyruvate kinase from Bacillus stearothermophilus has been cloned in Escherichia coli and sequenced. The open reading frame from the ATG start codon to the TAG stop codon is 1482 base-pairs and encodes a peptide of relative molecular mass 52,967. In the expression vector pKK223-3, containing the synthetic tac promoter, the gene is overexpressed in E. coli cells to an estimated level of 30% total soluble cell protein. A purification procedure for the overexpressed protein has been established. The construction and characterization of a pair of mutant proteins has given insight into the structural basis of allosteric regulation in the tetrameric enzyme. Substituting tryptophan for tyrosine at position 466 (mutant Trp466-->Tyr) resulted in an activated form of the enzyme, having a reduced K1/2 for the substrate phosphoenolpyruvate. We propose that the characteristics of this mutant might be the result of bulk removal releasing steric inhibition to the formation of an interdomain salt bridge between Asp356 and Arg444. The regulatory behaviour of the double mutant produced by making the additional substitution aspartate for glutamate at position 356 (Trp466-->Tyr/Asp356-->Glu) corroborates this. The position of the salt bridge is such that it might be pivotal to the conformation of a pocket that is proposed to open up when the active R-conformation is adopted. We suggest that the mechanism of activation of B. stearothermophilus pyruvate kinase by ribose-5-phosphate might hinge on an interaction with, or indirectly through, residue Trp466, removing it from the vicinity of the potential salt bridge between Asp356 and Arg444 and thus effecting a closing together of the protein structure concomitant with an opening up of the pocket region.

Allosteric Regulation↗

Hormonal control of glucose production and pyruvate kinase activity in isolated rat liver cells: influence of hypothyroidism.

Hormonal control of glucose production and of L-pyruvate kinase activity has been measured in isolated liver cells from fed control and thyroidectomized rats. In hypothyroid rats, sensitivity to isoproterenol as measured by these parameters was increased: the apparent K0.5 for isoproterenol-induced stimulation of glucose production decreased from 8.0 +/- 3 X 10(-6) M in control rats to 2.0 +/- 0.2 X 10(-8) M in hypothyroid rats (P less than 0.001) and the apparent K0.5 for inhibition of L-pyruvate kinase was 5 +/- 2 X 10(-7) M vs. 7 +/- 2 X 10(-9) M (P less than 0.001) in control and thyroidectomized rats, respectively. Utilisation of specific adrenergic antagonists confirmed increased beta-adrenergic responsiveness in hypothyroid rats. This phenomenon was not reversed by 3 days of T3 treatment (10 micrograms/100 g body weight). Sensitivity to the alpha-agonist was unchanged by thyroid status. Stimulation of glucose production and inhibition of L-pyruvate kinase activity by glucagon and their reversal by insulin were not affected by hypothyroidism. The dose-response curve to vasopressin and its maximal effect measured on stimulation of glucose production were unchanged in thyroidectomized rats. Thus, hypothyroidism produces a specific enhancement of liver beta-adrenergic responsiveness without affecting sensitivity to glucagon, insulin and vasopressin.

Animals↗

Inhibition of chicken pyruvate kinases by amino acids.

Alanine, serine, and phenylalanine behave as inhibitors competitive with phosphoenolpyruvate for the activated forms of the chicken pyruvate kinases. On the other hand, phenylalanine and alanine behave as K-type inhibitors and serine behaves as a heterotropic activator of pyruvate kinase variants which undergo homotropic activation. Tryptophan lowers the Vm and tends to yield complex plots with all variants studied. Kinetic patterns obtained in the presence of phenylalanine also show some characteristics not generally associated with a competitive mechanism. These observations are related to data previously obtained using the rat isozymes and are used to formulate a mechanism which explains the effects of the amino acids. This mechanism hypothesizes that all the effector amino acids bind to the phosphoenolpyruvate site; however, amino acids with nonpolar side chains also interact with a nonpolar region of the T conformer and thereby stabilize it. It is further proposed that there are two such nonpolar regions on the various pyruvate kinases--the one which reacts with the nonbulky side chains, and another which reacts only with relatively bulky side chains. The stabilizing effect of this second nonpolar interaction imparts inhibitory characteristics which are not competitive in nature. Serine and perhaps other polar compounds may also bind at the phosphoenolpyruvate site, but because of their polarity exert a repulsive force at the same nonpolar site with which the nonbulky nonpolar amino acids interact. This repulsion stabilizes the R conformation. Presumably the homotropic activating effects of phosphoenolpyruvate operate via this same mechanism. The data are also used to support a specific sequential-concerted mechanism for the homotropic activating effect of phosphoenolpyruvate. According to this mechanism, phosphoenolpyruvate adds sequentially to the first two subunits. This interaction causes the respective subunits to convert to the R conformation but, once two subunits are in R conformation, the remaining two subunits convert in concert.

Alanine↗

Relationship between the Subunits of Leucoplast Pyruvate Kinase from Ricinus communis and a Comparison with the Enzyme from Other Sources.

Two cDNA clones, PK(p)alpha and PK(p)beta, for the leucoplast isozyme of pyruvate kinase have been isolated and characterized. A Southern blot of castor (Ricinus communis) DNA probed with PK(p)alpha indicates the presence of a single gene for PK(p). Most (1610 base pairs) of the sequence of both cDNAs is identical. These 1610 base pairs begin with an ATG translation initiation codon, and have 248 base pairs of 3'-untranslated and 1362 base pairs of coding sequence. The sequences of the two clones 5'- to the identical regions are different but both encode peptides with a high percentage of hydrophobic amino acids. The derived sequence of PK(p)alpha encodes eight amino acid residues which have been identified as the amino-terminus of one subunit of PK(p) from castor seed leucoplasts when the enzyme is purified in the absence of cysteine endopeptidase inhibitors. The sequence upstream of these amino acids is possibly the transit peptide for this protein. When PK(p) is extracted under conditions that eliminate its proteolytic degradation, its alpha-subunit has a relative molecular weight equal to the full-length coding sequence of PK(p)alpha. The data indicate that the transit peptide for the subunit of leucoplast pyruvate kinase encoded by PK(p)alpha is not cleaved until the protein is released from the plastid. The derived amino acid sequences of PK(p)alpha and PK(p)beta are most closely related to Escherichia coli pyruvate kinase. Although the residues involved in substrate binding are conserved in leucoplast pyruvate kinase, there is no phosphorylation site and only 5 of 15 amino acids in the E. coli fructose-1,6-bisphosphate binding site are conserved.

Journal Article↗

Effects of anoxia on the extra- and intracellular acid-base status in the land snail helix lucorum (L.): lack of evidence for a relationship between pyruvate kinase down-regulation and acid-base status

The aims of the present study were to describe a possible correlation between the regulation of the key glycolytic enzyme pyruvate kinase and the acid-base status in the haemolymph and in several other tissues of land snails during anoxia. To illustrate whether such a relationship exists, we determined (i) the acid-base variables in the haemolymph and tissues of the land snail Helix lucorum, (ii) the kinetic properties of pyruvate kinase from several tissues and (iii) the levels of the anaerobic end-products d-lactate and succinate in the haemolymph and tissues of aerobic and anoxic Helix lucorum. The results showed that the pH of haemolymph (pHe) decreased significantly over the first 20 h of anoxia and then recovered slowly towards control values. A similar pattern was observed for intracellular pH (pHi), which decreased significantly over the first 16 h of anoxia and slowly returned towards control levels. The reduction and recovery of pHi and pHe seem to reflect the rate of anaerobic metabolism. The main anaerobic end-products, d-lactate and succinate, accumulated rapidly during the initial stages of anoxia and more slowly as anoxia progressed. The decrease in the rate of accumulation of anaerobic end-products during prolonged anoxia was due to the conversion of tissue pyruvate kinase to a less active form. The results demonstrate a correlation between pyruvate kinase down-regulation and the recovery of acid-base status in the haemolymph and the tissues of land snails during anoxia.

Journal Article↗

Sulfuryl transfer catalyzed by pyruvate kinase.

Sulfoenolpyruvate, the analogue of phosphoenolpyruvate in which the phosphate ester has been replaced by a sulfate ester, has been synthesized in three chemical steps from ethyl bromopyruvate in 40% overall yield. This compound is a substrate for pyruvate kinase, producing pyruvate and adenosine 5'-sulfatopyrophosphate. The latter compound has been identified by NMR spectroscopy and by comparison with an authentic sample. Sulfuryl transfer from sulfoenolpyruvate is 250-600-fold slower than phosphate transfer from phosphoenolpyruvate under identical conditions. Sulfoenolpyruvate is not a substrate for phosphoenolpyruvate carboxylase. Kinetic studies reveal that it does not bind to the active site; instead, it binds to the site normally occupied by glucose 6-phosphate and activates the enzyme in a manner similar to that shown by glucose 6-phosphate.

Animals↗

Role of the stimulatory proteins Sp1 and Sp3 in the regulation of transcription of the rat pyruvate kinase M gene.

Site-directed mutagenesis of cis-regulatory elements in the 5' flanking region of the rat pyruvate kinase M gene revealed that two out of the three GC boxes (-133/-124 and -48/-39) are involved in the stimulation of a core promoter (-35/+46). These two regions were also protected in DNaseI footprinting assays. Sp1 and Sp3 were identified as binding proteins to all three GC boxes by supershift experiments. Cotransfections in Drosophila SL2 cells revealed a strong stimulatory function of Sp1 and a synergistic effect of Sp3 to Sp1 in the activation of the pyruvate kinase M promoter. No inhibitory effect of Sp3 was detected. These data indicate that binding of Sp1 at two GC boxes is required for full promoter activity of the pyruvate kinase M gene and thus contributes to the observed cell-cycle-dependent expression of this enzyme in proliferating rat thymocytes.

Animals↗

Regulation of hepatocyte cAMP and pyruvate kinase by site-specific analogs of adenosine.

The effects of site-specific analogs of adenosine on cAMP content and pyruvate kinase activity of isolated rat hepatocytes were studied. N6-(phenylisopropyl) adenosine (PIA), a metabolically stable analog of adenosine which acts specifically at 'R' sites, increased cAMP content and decreased pyruvate kinase activity to about the same extent as did epinephrine, By contrast, adenosine itself was without effect. Consistent with 'R'-site mediated effects, the effects of PIA were blocked by 3-isobutyl-l-methylxanthine. 2'5'-Dideoxyadenosine, which acts specifically at 'p' sites to inhibit adenylate cyclase, counteracted the effects of epinephrine on pyruvate kinase, but paradoxically not the effects of PIA. The adenylate cyclase in membranes from these parenchymal cells was determined and was found to exhibit comparable sensitivity to 'R' site-specific analogs and other activators as did the enzyme prepared from whole liver. Thus, the data suggest that the effects on liver metabolism of 'R' site-specific analogs of adenosine are initiated by an adenosine-receptor coupled activation of adenylate cyclase and that these effects are characteristics of the parenchymal cells.

1-Methyl-3-isobutylxanthine↗

The L- and R-type isozymes of rat pyruvate kinase are produced from a single gene by use of different promoters.

cDNA clones for rat R-type pyruvate kinase and a genomic clone encoding both L- and R-type isozyme mRNAs were isolated. Their sequences were compared with that of the L-type isozyme cDNA to determine the sequences of mRNA and protein of the R-type isozyme and the organizations of the L- and R-type genes. Results showed that the R-type isozyme mRNA had an identical nucleotide sequence to that of the L-type except in the 5'-terminal region including the coding sequence and the length of the 3'-untranslated region. The sequence upstream of the 5th coding residue of the L-type was replaced by a 98-nucleotide coding sequence plus a 5'-untranslated region in the R-type isozyme. Therefore, the R-type subunit consists of 574 amino acids, which is 31 residues longer than the L-type at the amino terminus. The pyruvate kinase L gene is present as a single copy per haploid genome and is composed of 12 exons and 11 introns with a length of about 9.3 kilobase pairs. The first (exon R) and second (exon L) exons encode the 5'-terminal sequences specific for the R- and L-types, respectively. The remaining downstream exons encode a sequence common to both isozymes. The last exon contains the entire 3'-untranslated region, including several putative polyadenylation signals. Alternative use of these signals is reported to be responsible for generation of multiple mRNA species for the L-type, whereas the R-type uses only the first signal. The cap site is mapped 16 nucleotides upstream from the translation initiation site for the L-type, whereas multiple cap sites were suggested for the R-type. The canonical promoter of the TATA box was identified in the upstream sequence of exon L, but not in that of exon R. Instead, the 5'-flanking region of exon R contained another promoter sequence of the CAT box. Thus, we conclude that the L- and R-type isozymes of pyruvate kinase are produced from a single gene by use of different promoters.

Amino Acid Sequence↗

Complex kinetics of human leukocyte and platelet pyruvate kinases.

In the presence of SH group protectors, human leukocyte and platelet pyruvate kinases demonstrate biphasic kinetics with respect to the phosphoenolpyruvate substrate. SH group oxidation by oxidized glutathione reveals positive cooperativity kinetics for purified preparations of leukocyte and platelet pyruvate kinases. Complete reversal of the phenomenon may be obtained by incubation for several hours in dithiothreitol. This communication illustrates the existing relationships between enzyme conformation, the redox state of the SH groups, and the observed kinetics.

Blood Platelets↗

Modification of pyruvate kinase and lactate dehydrogenase in foot muscle of the sea mussel Mytilus galloprovincialis under anaerobiosis and recovery.

The modification of pyruvate kinase (PK) and lactate dehydrogenase (LDH) activity in foot muscle of the mussel Mytilus galloprovincialis during exposure to air and recovery in water was investigated. In the course of exposure to air, the activity of these enzymes measured at high and low substrate concentrations showed successive increases and decreases. Returning the mussels to water after exposure to air affected enzyme activity in a manner similar to anaerobiosis. When measuring at saturated concentrations of substrates and substrate and coenzyme for PK and LDH, respectively, the maximum activation of PK (37%) was observed at 4 h of animal exposure to air, and for LDH (67%) at 6 h exposure to air. During 24 h of exposure of animals to air, PK activity practically reached the stock level, while LDH was still activated (148%). The change in lactate dehydrogenase activity in mussel muscle during anoxia and recovery is described here for the first time. Variation in pyruvate kinase activity during exposure to air and recovery is linked to the alteration of half-maximal saturation constants and maximal velocity for both substrates. The possible role of reversible phosphorylation in the regulation of pyruvate kinase and lactate dehydrogenase properties is discussed.

Anaerobiosis↗

[Hereditary haemolytic anaemia due to pyruvate kinase deficiency. Prognosis of neonatal forms (author's transl)].

Published retrospective studies seem to indicate that neonatal haemolytic anaemia due to erythrocyte pyruvate kinase deficiency is followed by severe chronic haemolysis. In the present study 13 children from 11 different families, who developed haemolytic anaemia associated with pyruvate kinase deficiency during the first hours of life were followed up for periods of 1 to 10 years. In 4 children all signs of haemolysis disappeared within less than 6 months; genetic studies showed that they were heterozygous for the congenital deficiency. Among the remaining 9 children, all double heterozygous, 4 developed moderate, well tolerated haemolysis which did not require blood transfusions or splenectomy; 5 remained severely anaemic and required repeated transfusions and, in 3 cases, splenectomy. During the neonatal period there was no clinical, haematological or biological evidence that the prognosis would be different in these three groups of children. Only the genetic studies separated those who were simple heterozygous from the others. That only 5 of 13 children had severe chronic evolutive haemolytic anaemia suggests that the poor prognosis of neonatal haemolytic jaundice due to pyruvate kinase deficiency should be reconsidered.

Anemia, Hemolytic, Congenital↗