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Metabolic regulation of pyruvate kinase isolated from autotrophically and heterotrophically grown Paracoccus denitrificans.

Pyruvate kinase (ATP: pyruvate phosphotransferase (EC 2.7.1.40) was partially purified from both autotrophically and heterotrophically grown Paracoccus denitrificans. The organism grown under heterotrophic conditions contains four times more pyruvate kinase than under autotrophic conditions. The enzyme isolated from both sources exhibited sigmoidal kinetics for both phosphoenolpyruvate (PEP) and ADP. The apparent Km for ADP and PEP in the "autotrophic" enzyme were 0.63 mM ADP and 0.25 mM PEP. The effect of several low molecular weight metabolites on the pyruvate kinase activity was investigated. Ribose-5-phosphate, glucose-6-phosphate and AMP stimulated the reaction at low ADP levels; this stimulation was brought about by an alteration in the apparent Km for ADP. The pyruvate kinases differ in their response to adenine nucleotides, but both preparations seem to be under adenylate control. The results are discussed in relation to the role of pyruvate kinase as a regulatory enzyme in P. denitrificans grown under both autotrophic and heterotrophic conditions.

Adenosine Monophosphate↗

Pyruvate kinase in normal human thyroid tissue and thyroid neoplasms.

Pyruvate kinase (ATP: pyruvate-2-O-phosphotransferase, EC 2.7.1.40) was studied in human thyroid carcinomas (n = 9), follicular adenomas (n = 32), and normal thyroid tissue (n = 12). The specific activity in carcinomas (mean 0.94 +/- 0.44) is significantly increased (P less than 0.0001) in comparison with pyruvate kinase in normal tissue (mean, 0.14 +/- 0.05). Specific activities of follicular adenomas are rather heterogeneous. When these tumors were divided into three groups of increasing proliferative activity as judged by histopathologic criteria, highest specific activities of pyruvate kinase were found in the group with the highest proliferative activity. On the other hand, specific enzyme activities of the least active tissues (colloid-containing follicular adenomas) were comparable to normal. The isoenzyme composition of normal thyroid tissue is characterized by the presence of K4, K3M, and K2M2 types of pyruvate kinase. In carcinomas, mainly K4 and K3M are found. Undifferentiated tumors express more K4 type compared with follicular and papillary carcinomas. Follicular adenomas with high specific activity show the same electrophoretic pattern as found in follicular carcinomas. Pyruvate kinase from malignant tumors is more inhibited by the amino acid L-alanine than the enzyme from normal thyroid tissue as a consequence of the presence of more K subunits in the malignant tissues. The K4 type from normal thyroid tissue is not kinetically different from the K4 type of carcinomas.

Adenoma↗

Turnover rates of hexokinase I, phosphofructokinase, pyruvate kinase and creatine kinase in slow-twitch soleus muscle and heart of the rabbit.

Hexokinase I was purified from rabbit heart to a specific activity of 70 U/mg protein. The purified enzyme was electrophoretically homogeneous with an apparent molecular weight of 102,000. Purified immunoglobulins from sheep were used to titrate the percentage of hexokinase I in various tissues of the rabbit. Precipitating antibodies from sheep were also prepared against rabbit muscle MM-creatine kinase, phosphofructokinase and pyruvate kinase. Apparent turnover rates of these phosphotransferases and of hexokinase I were determined in rabbit heart and soleus muscle by means of the immunoprecipitation technique after single pulse labelling with [U-14Cl]leucine in vivo. Apparent half-lives of phosphofructokinase, pyruvate kinase and hexokinase I were 0.56 d, 0.73 d and 0.93 d in rabbit heart. In slow-twitch soleus muscle half-lives of phosphofructokinase, pyruvate kinase, hexokinase II and creatine kinase were 0.63 d, 0.72 d, 0.85 d and 0.82 d. The similarity of the rate constants of degradation of these enzymes is interpreted as an indication that different tissue concentrations result primarily from different rates of synthesis.

Animals↗

Dual effects of phenylalanine analogs on rabbit-muscle pyruvate kinase activity.

Rabbit muscle pyruvate kinase activity has been studied in the presence of L-phenylalanine and its analogs: L-phenylalanyl methyl ester (PheOMe), L-1-amino-2-phenylethyl phosphonic acid (PnPhe), L-alanine and L-1-aminoethyl phosphonic acid (PnAla). At appropriate pH and substrate concentrations all the analogs and Phe exhibited activatory and inhibitory effects at low (1--5 mM) and at high (above 5mM) ligand concentrations respectively. Activation of pyruvate kinase by Phe and PheOMe was observed at pH above 8.2 in the presence of 2.5 mM ADP and 0.5 mM phosphoenolpyruvate (P-pyruvate), while PnPhe activation was also observed at pH 7.5. The activatory effect followed the order: PnPhe much greater than Phe greater than PheOMe. All the effectors showed a mixed type of inhibition or activation with P-pyruvate as a variable substrate and a non-competitive inhibition or activation with ADP as a variable substrate.

Adenosine Diphosphate↗

Use of methanethiolation to investigate the catalytic role of sulphydryl groups in rabbit skeletal muscle pyruvate kinase.

Incubation of rabbit skeletal muscle pyruvate kinase (ATP:pyruvate 2-O-phosphotransferase, EC 2.7.1.40) with methyl methanethiosulphonate resulted in the time- and inhibitor concentration-dependent loss of enzyme activity. Substrates or products of the catalytic reaction prevented the loss of activity caused by methanethiolation. Their effectiveness as protecting agents was placed in the order ADP greater than ATP greater than Mg2+ greater than phosphoenolpyruvate greater than pyruvate. The essential catalytic cation, K+, had no effect on the methanethiolation reaction. [Me-3H]Methanethiosulphonate modified all the available cysteine thiol groups which correlated to the incorporation of four SC3H3 groups per protomer. Four radioactive peptides were obtained on tryptic peptide mapping. When methanethiolation was carried out in the presence of Mg2+ alone or with Mg2+ and ATP together, then only three SC3H3 groups were incorporated into each subunit. If MgATP protected methanethiolated pyruvate kinase was reacted with iodo[2-3H]acetic acid then 1.37 +/- 0.2 groups per protomer were carboxymethylated. 70% of the radioactivity was located in a single peptide on tryptic peptide mapping. This peptide was isolated and contained the segment carboxymethyl cysteine (Glx, Asx, Ser) Arg. Collectively these data indicate that although all thiol groups are equally accessible to methyl methanethiosulphonate, only a single thiol group participates in the catalytic event. An additional role in the maintenance of structure for this thiol group was also shown in studied of reduction and thermal denaturation of the enzyme.

Adenosine Diphosphate↗

Anion effects on pyruvate kinase.

Rabbit muscle pyruvate kinase is shown not to be activated by several anions (acetate, chloride, lactate, nitrate and sulphate) when tested as their tetramethylammonium salts. This contradicts the conclusions of Focant & Watts (1973).

Acetates↗

Activation of Cytosolic Pyruvate Kinase by Polyethylene Glycol.

Homogeneous cytosolic pyruvate kinase from endosperm of germinating castor oil (Ricinus communis L. cv Hale) seeds was potently activated by polyethylene glycol. The addition of 5% (w/v) polyethylene glycol to the pyruvate kinase reaction mixture caused a 2.6-fold increase in maximal velocity and 12.5- and 2-fold reductions in Km values for phosphoenolpyruvate and ADP, respectively. Glycerol, ethylene glycol, and bovine serum albumin also enhanced pyruvate kinase activity, albeit to a lesser extent than polyethylene glycol. The addition of 5% (w/v) polyethylene glycol to the elution buffer during high-performance gel filtration chromatography of purified cytosolic pyruvate kinase helped to stabilize the active heterotetrameric native structure of the enzyme. A higher degree of inhibition by MgATP, but lower sensitivity to the inhibitors 3-phosphoglycerate and fructose- 1,6-bisphosphate, was also observed in the presence of 5% (w/v) polyethylene glycol. It is concluded that (a) plant cytosolic pyruvate kinase activity and regulation, like that of other regulatory pyruvate kinases, is modified by extreme dilution in the assay medium, probably as a result of deaggregation of the native tetrameric enzyme, and (b) ATP is probably the major metabolic effector of germinating castor endosperm cytosolic pyruvate kinase in vivo.

Journal Article↗

The substrate proton of the pyruvate kinase reaction.

The pyruvate kinase reaction occurs in separate phosphate- and proton-transfer stages: (formula; see text) K+, Mg2+, and Mg.ADP are known to be required for the phosphoryl transfer step, and K+ and Mg2+ with allosteric stimulation by MgATP are important for proton transfer. This paper uses the isotope trapping method with 3H-labeled water to identify the proton donor and determine when in the sequence of the catalytic cycle it is generated. When the enzyme was allowed to exchange briefly with 3H2O (pulse phase) and then diluted into a mixture containing PEP, ADP, and the cofactor K+, Mg2+, or Co2+ in D2O (chase phase), an amount of [3H]pyruvate was formed in great excess of the amount expected from steady-state catalysis in the diluted 3H-labeled water. With K+, Mg2+, and ADP at pH 6-9.5 in the pulse phase, a limit of 1.25 enzyme equiv of 3H were trapped. The concentration of PEP required for half-maximum trapping was 14-fold greater than its steady-state Km. Therefore, the rate constant for dissociation of the donor proton is estimated to be 14 times the steady-state rate of [3H]pyruvate formation, approximately 109 s-1, or 1500 s-1. At pD 6.4, Mg2+ and ADP were required in the chase, indicating that the ADP in the pulse was not bound tightly enough to be used in the chase. At pD 9.4, ADP was not required in the chase, only Mg2+ or Co2+, making it possible to limit the chase to one turnover from hybrid labeled complexes such as E.K.Mg.CoADP or E.K.Co.MgADP and PEP.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Lack of temperature-sensitivity of rat liver pyruvate kinase.

Rat liver pyruvate kinase, prepared by Sephadex treatment of a 10(5)g supernatant in phosphate buffer, is quite stable and gives reproducible results when a variety of parameters are altered in the enzyme assay. Incubation of this preparation at 25 degrees C or 0-2 degrees C has no effect on the activation by fructose 1,6-diphosphate or inhibition by ATP or alanine.

Adenosine Triphosphate↗

Metabolic regulation of glycolysis in sea bass (Dicentrarchus labrax L.) muscle. I. Kinetic study and characteristic modulators of pyruvate kinase.

White muscle pyruvate kinase from sea bass presents positive cooperativity with respect to PEP substrate. The enzyme is regulated by F-1.6-P2 and L-Phenylalanine. The activator effect of F-1.6-P2 in experiments carried out for the substrate PEP with crude extract seems to indicate that the enzyme is activated in vivo by this compound. The enzyme was not inhibited by either alanine or ATP but was inhibited by L-phenylalanine. Therefore this enzyme presents kinetic and regulatory properties similar to those of the mammalian isozyme M2.

Adenosine Diphosphate↗

Molecular mechanism of erythrocyte pyruvate kinase deficiency.

Erythrocyte pyruvate kinase (PK) from 5 patients with cogenital non-spherocytic hemolytic and erythrocyte PK deficiency have been studied by immunological methods and electrofucusing. L type immunologically related PK was titrated in crude hemolysate with anti human liver L type PK rabbit serum and M2 type immunologically related PK with anti human leukocyte M2 type PK serum. After partial purification, molecular specific activity of erythrocyte PK was measured by immunoinactivation and electroimmunodiffusion and anti L type PK serum. Partially purified erythrocyte PK was focused on continuous sucrose gradient with 2% ampholines covering the pH range 5--8. PK enzymatic deficiency was due two times to a lowered molecular specific activity of the PK variants, the concentration of PK antigen being in the normal range. In the 3 other cases enzyme activity and immunological reactivity were likewise lowered. In the 2 patients with the most marked erythrocyte PK deficiency about 50% of the residual activity in crude hemolysate were non inhibited by anti L type PK serum, but were inhibited by anti M2 type PK serum. In 3 patients, the electrofocusing pattern of partially purified PK was significantly different from than of normal controls. In conclusion, the heterogeneity of the molecular mechanisms of the deficiency on the one hand, and the abnormalities of electrofucusing patterns on the other hand, seem to indicate that erythrocyte PK deficiency is due to the synthesis by muted structural genes of various abnormal PK molecules.

Anemia, Hemolytic, Congenital Nonspherocytic↗

Human erythrocyte pyruvate kinase. Total purification and evidence for its antigenic identity with L-type enzyme.

Erythrocyte pyruvate kinase (ATP:pyruvate 2-0-phosphotransferase, EC 2.7.1.40) has been purified 40 000 times from human erythrocytes, according to an original method. The whole purification procedure included toluene extraction, ammonium sulphate fractionation, DEAE-Sephadex batchwise chromatography and affinity chromatography on a Dextran Blue-Sepharose column with specific elution by fructose 1,6-diphosphate. The final preparation had specific activity of 290 I.U./mg of proteins and the overall yield was about 30%. Pyruvate kinase showed only one protein band as judged by sodium dodecyl sulphate acrylamide gel electrophoresis. Pure enzyme was injected into rabbits and monospecific antiserum was obtained able to neutralize, per ml, 150 I.U. of erythocyte-type pyruvate kinase as well as of L-type enzyme. L-type and erythrocyte-type pyruvate kinases showed reactions of complete identity when tested in immunodiffusion against anti-erythrocyte type pyruvate kinase sera; in all cases a single precipitation line could be detected. L-type pyruvate kinase when mixed with anti-erythocyte pyruvate kinase serum suppressed all ability of that antiserum to react immunological with erythocyte enzyme. Finally the microcomplement fixation curves using anti-erythrocyte pyruvate kinase serum were identical for erythrocyte and L-type enzymes. From these results it appeared that no antigenic difference between L-type and erythocyte enzyme could be detected. Consequently the most likely hypothesis is that both these enzymes are coded by the same single gene, the slight electrophoretic differences between them being due to post-synthetic tissue-specific changes.

Antigens↗

The assay of pyruvate kinase activity in gastric mucosa.

Pyruvate kinase activity in gastric mucosal supernatant preparations shows large responses to exogenous effectors. At pH 7.5, fructose 1,6-diphosphate can cause large stimulations in activity. Alanine inhibits the reaction but this effect is partially reversed by fructose 1,6-diphosphate. In the absence of these compounds, 4.0-5.0 mM phosphoenolpyruvate (PEP) is required to generate maximal activity in the assay system used. Electrophoresis reveals an isoenzyme pattern containing only one form of pyruvate kinase, an M isoenzyme, in both fundic and antral mucosa. The pyruvate kinase of gastric mucosa thus resembles the M-type enzymes of leucocytes and liver. Measurements of activity at both 1.0 mM PEP and 4.0--5.0 mM PEP, with and without additions of fructose 1,6-diphosphate, are recommended for the reliable estimation of pyruvate kinase activity in this tissue.

Animals↗

In vivo and in vitro studies on the pathway of modification of mussel pyruvate kinase.

1. On aerial exposure, pyruvate kinase is inactivated in various organs of M. edulis; the decrease of activity is slower in muscle than in non-muscular tissue. 2. Anoxic in vitro incubation of gills results in a rapid inactivation of pyruvate kinase. No change occurs in an aerated medium. 3. Enzyme inactivation is mimicked in part by oxic incubation in an acidified medium containing 5,5-dimethyloxazolidine-2,4-dione, and by the action of calcium ionophore A23187. 4. Incubation of supernatant of gill homogenate results in a slow inactivation of pyruvate kinase that is inhibited by trifluoperazine or EGTA and stimulated by exogenous calmodulin. 5. Addition of ATP plus cAMP stimulates pyruvate kinase inactivation in supernatant of homogenized muscle but not so in a high molecular weight fraction thereof.

Adenosine Triphosphate↗

Pancreatic islets contain the M2 isoenzyme of pyruvate kinase. Its phosphorylation has no effect on enzyme activity.

To determine which of the major isoenzymes of pyruvate kinase pancreatic islet pyruvate kinase most resembled, it was compared to pyruvate kinase from other tissues in kinetic and immunologic studies. The pattern of activation by fructose bisphosphate and the patterns of inhibition by alanine and phenylalanine were most similar to those of the M2 isoenzyme from kidney and were dissimilar to those of the isoenzymes from skeletal muscle (type M1) and liver (type L). The islet pyruvate kinase was inhibited by anti-M1 pyruvate kinase serum (which crossreacts with the M2 isoenzyme), but not by anti-L pyruvate kinase. These results are most consistent with islets possessing predominantly, if not exclusively, the M2 isoenzyme of pyruvate kinase. We previously showed that rat pancreatic islet cytosol contains protein kinases that can catalyze a calcium-activated phosphorylation of an endogenous peptide that has properties, such as subunit molecular weight and isoelectric pH, that are identical to those of the M2 and M1 isoenzymes of pyruvate kinase, and that islet cytosol can catalyze phosphorylation of muscle pyruvate kinase. In the present study it was shown that incubating islet cytosol with ATP under conditions known to permit phosphorylation and inhibition of liver pyruvate kinase did not affect the islet pyruvate kinase activity. It is concluded that phosphorylation of the islet pyruvate kinase has no immediate effect on enzyme activity.

Adenosine Diphosphate↗

Phosphorylation of pyruvate kinase type K in human gliomas by a cyclic adenosine 5'-monophosphate-independent protein kinase.

In recent years, we reported the isozyme shift of pyruvate kinase from the M- toward the K-type in human neuroectodermal tumors. To investigate whether this shift enables phosphorylation of pyruvate kinase in these tumors, we studied 29 different specimens of human brain tumors for endogenous pyruvate kinase phosphorylation. While in normal human brain no phosphorylation of pyruvate kinase was detected, in all brain tumors pyruvate kinase became phosphorylated. There was no correlation between the extent of the pyruvate kinase phosphorylation and the histological classification and grading or the pyruvate kinase isozyme composition of the tumors. Only pyruvate kinase type K, and not type M, served as a substrate in the phosphorylation reaction. The phosphorylation of pyruvate kinase could be completely inhibited by addition of fructose 1,6-bisphosphate, a positive effector of pyruvate kinase type K; alanine, however, a negative effector, and phospho-enol-pyruvate, a substrate in the pyruvate kinase reaction, had no effect. While pyruvate kinase type L in liver is phosphorylated by a cyclic AMP-dependent protein kinase, the incorporation of phosphate into pyruvate kinase in human brain tumors appeared to be cyclic AMP independent and occurred exclusively on serine residues.

Biopsy↗

Purification of leucoplast pyruvate kinase from developing castor bean endosperm.

Leucoplast pyruvate kinase from endosperm of developing castor oil seeds (Ricinus communis L.; cv Baker) has been purified 1370-fold to a specific activity of 41.1 micromoles pyruvate produced per minute per milligram protein. Nondenaturing polyacrylamide gel electrophoresis of the purified enzyme resulted in a single protein staining band that co-migrated with pyruvate kinase activity. However, following sodium dodecyl sulfate polyacrylamide electrophoresis, two major protein staining bands of 57.5 and 44 kilodaltons, which occurred in an approximate 2:1 ratio, respectively, were observed. The native molecular mass was approximately 305 kilodaltons. Rabbit antiserum raised against the final enzyme preparation effectively immunoprecipitated leucoplast pyruvate kinase. The 57.5- and 44-kilodalton polypeptides are immunologically related as both proteins cross-reacted strongly on Western blots probed with the rabbit anti-(developing castor seed endosperm leucoplast pyruvate kinase) immunoglobulin that had been affinity-purified against the 57.5-kilodalton polypeptide. In contrast, pyruvate kinases from the following sources showed no immunological cross-reactivity with the same immunoglobulin: the cytosolic enzyme from developing or germinating castor bean endosperm; chloroplastic pyruvate kinase from expanding leaves of the castor oil plant; chloroplastic or cytosolic pyruvate kinase from the green alga, Selenastrum minutum; and mammalian or bacterial pyruvate kinases.

Journal Article↗