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D Cottreau

Publications and source records attributed to D Cottreau.

At least 19 recordsLinked to original sources

Dietary control of aldolase B and L-type pyruvate kinase mRNAs in rat. Study of translational activity and hybridization with cloned cDNA probes.

Liver L-type pyruvate kinase and aldolase B mRNAs are the two species whose translational activity increases the most after feeding starved rats a high carbohydrate diet (Simon, M. P., Besmond, C., Cottreau, D., Weber, A., Chaumet-Riffaud, P., Dreyfus, J. C., Sala Trépat, J., Marie, J., and Kahn, A. (1984) J. Biol. Chem., in press). We therefore compared the pattern of this induction in three tissues synthesizing these enzymes, e.g. the liver, small intestine, and kidney. Influence of high lipid and protein diets on liver L-type pyruvate kinase and aldolase B mRNAs was also investigated. In the starved rat livers, L-type pyruvate kinase mRNA was practically undetectable. Carbohydrate diet induced an increase of both mRNA concentrations, with a maximum at the 12-18th h; at this time, mRNA concentration was increased about 4-8 times for aldolase B and 40-100 times for L-type pyruvate kinase, translational activities representing about 1% of the total mRNA activity for both enzymes. After the 24th h of carbohydrate diet, mRNA concentrations decreased slightly, then remained in plateau. In animals refed the high carbohydrate diet, starvation as well as high lipid and protein diets provoked a rapid decrease of both mRNA concentrations and translational activities. In the kidney, aldolase B mRNA synthesis was high in starved rats and was only slightly stimulated by carbohydrates (1.5-2.5 times). L-type pyruvate kinase mRNA concentration was increased 6-15-fold after feeding a high carbohydrate diet. In the small intestine, in contrast, the extent of aldolase B mRNA induction by a carbohydrate diet was similar to that in the liver, while L-type pyruvate kinase mRNA concentration was practically similar in starved and refed rats (about 1:10 of the concentration observed in refed rat liver). These results seem to indicate that the mechanisms responsible for carbohydrate induction of L-type pyruvate kinase and aldolase B are different. In addition, dietary control of each enzyme is also different in the various tissues which synthesize them.

Animals↗

Isozyme pattern in serially xenotransplanted childhood tumors.

Growth rate, histological course, and polymorphic enzyme pattern (glucose 6-phosphate dehydrogenase, glucose phosphate isomerase, and phosphofructokinase) were studied in eight childhood tumors xenotransplanted serially to nude mice. The growth rate of these tumors (three nephroblastomas, one hypercalcemic renal tumor, three rhabdomyosarcomas, and one malignant histiocytosis) appeared stable for any one particular tumor line. The time interval between two grafts varied from 1 to 3 weeks to 1 to 2 months in correlation with the clinical course of each malignant process. Histological changes were mostly in relation with a progressive dedifferentiation of the grafts. Immunoneutralization of glucose-6-phosphate dehydrogenase and glucose phosphate isomerase made possible the quantification of the stroma reaction in the grafts. A series of ten passages showed the amount of stroma to be constant for a given tumor type but variable from one tumor type to another, except for the malignant histiocytosis which showed an increase in stroma constituent after the sixth passage. One nephroblastoma tumor line showed, during the third passage, a sudden acceleration in the growth rate and complete transformation of the histological and isozymic patterns, which were interpreted as being the result of a murine lymphoma. The fibroblastic form of phosphofructokinase increased in every tumor line, whatever the tumor type. This change may be linked to a progressive dedifferentiation during the passage.

Animals↗

Molecular cloning of cDNA for rat L-type pyruvate kinase and aldolase B.

Two double-stranded cDNA recombinant pBR322 plasmid libraries were constructed starting from high carbohydrate diet rat liver poly(A)+ mRNA, either fractionated by denaturing sucrose gradient centrifugation for the cloning of L-type pyruvate kinase cDNA, or nonfractionated for aldolase B. Both libraries were screened with single-stranded cDNA probes reverse transcribed from fasted or high carbohydrate diet rat liver mRNAs. mRNAs from fasted animals were also fractionated by sucrose gradient centrifugation and mRNAs from the fed animals were, in addition, further purified by high performance liquid gel filtration chromatography. Those clones hybridizing with the "positive" probe (from animals fed the high carbohydrate diet) and not with the "negative" one (from fasted animals) were preselected and their plasmid DNA was purified and analyzed by positive hybridization-selection. Thirty of 4500 bacteria colonies transformed by recombinant plasmids were preselected by differential screening for pyruvate kinase, and 8 of 864 colonies for aldolase B. Twenty-two recombinant plasmids for pyruvate kinase and two for aldolase B were shown to contain specific cDNA inserts by positive hybridization-selection. Plasmids DNAs of some pyruvate kinase and aldolase B clones (whose inserts ranged from 700 to 1050 bases in length) were labeled by nick translation and used as probes for Northern blot hybridization. The pyruvate kinase cDNA probes recognized mainly a 3400-base RNA species which was detected in high carbohydrate diet rat liver, but not in fasted rat liver and in tissues which do not synthesize L-type pyruvate kinase. In addition, some pyruvate kinase probes hybridized with minor RNA species of about 2000 bases in length, only observed after carbohydrate diet. For aldolase B, the recombinant plasmid DNA hybridized with a single RNA species of 1750 bases. This RNA, detected in kidney, small intestine and liver, was induced by a high carbohydrate diet and increased with liver development. The rat probe cross-hybridized with human aldolase B messenger RNA.

Animals↗

Tumor cell line characterization of a malignant histiocytosis transplanted into nude mice.

The successful transplantation of a human malignant histiocytosis into nude mice allowed the examination of its atypical histiocytic cell proliferation. Histiocytic type cells were identified by positive reactions with acid phosphatase and non-specific esterase and with anti human DR or OKI1 antisera. Presence of OKT9 antigen and negative results obtained with most OKT antisera, rosettes, erythrophagocytosis and lysozyme corroborate the histiocytic immature state of the cells and preclude another type of tumor. All positive tests to prove a mature mononuclear phagocytic origin were attributable to the murine host cell reaction.

Animals↗

Pyruvate kinase and phosphofructokinase isozymes in childhood cancers.

Pyruvate kinase and phosphofructokinase isozymic expression have been investigated in 62 childhood cancers by electrofocusing and immunoneutralization. Isozymic expression was roughly intermediate between that of the corresponding normal adult and fetal tissue. There were unique features distinguishing malignant from both adult and fetal tissues. In addition, phosphofructokinase and pyruvate kinase appeared to be excellent markers for nervous tissue and skeletal muscle differentiation. In neuroblastomas there was a close relationship between the differentiation level of tumors and their isozyme composition. The same phenomenon was observed in rhabdomyosarcomas and teratomas.

Adult↗

Cell-free translation of messenger RNAs from adult and fetal human muscle. Characterization of neosynthesized glycogen phosphorylase, phosphofructokinase and glucose phosphate isomerase.

Using a procedure of ethanol precipitation in concentrated guanidine . HCl solutions followed by chloroform/isoamylic alcohol extraction and washing in 3 M sodium acetate, we isolated high-molecular-weight cellular RNA from human fetal and adult skeletal muscle. About 500 micrograms RNA were obtained/g of fetal muscle and 50 micrograms RNA/g of adult muscle. Both RNA preparations were efficiently translated in a cell-free reticulocyte lysate system and directed synthesis of various polypeptides, one of them of Mr 200,000 probably corresponding to myosin heavy chains. Dodecylsulphate/polyacrylamide gel electrophoretic pattern of polypeptides neosynthesized using either fetal or adult RNA exhibited several differences. Three neosynthesized cytosolic muscle enzymes were purified from the translation mixtures using a micro-method of immunoaffinity chromatography; specificity of the neosynthesized polypeptides purified according to this procedure was checked by immunological competition with the corresponding unlabeled pure muscle enzymes. Successful cell-free translation of RNA from adult skeletal muscle and purification of neosynthesized human enzymes are reported for the first time. These methods, indispensable for further studies on human adult muscle gene expression, could also shed light on the mechanism of some inherited molecular diseases and tumoral or dystrophic processes.

Animals↗

Muscle phosphofructokinase deficiency in man: expression of the defect in blood cells and cultured fibroblasts.

Using specific immunoprecipitation of M-type phosphofructokinase and assay of immunoprecipitate enzyme activity, it was possible to detect some M-type enzyme in normal blood cells and fibroblasts, although this isoenzyme represents a very small part of total phosphofructokinase. White blood cells and cultured fibroblasts from a patient with hereditary muscle phosphofructokinase deficiency showed normal phosphofructokinase activity and electrophoretic pattern; direct immunoneutralization results were also normal. Nevertheless, it was possible to prove the defect in these cells using the immunoprecipitation method: no active immunoprecipitates could be obtained with anti M-type antibody. The patient's red blood cells had a reduced phosphofructokinase activity which was only neutralized by anti L-type antiserum. The purification of partially deficient red cell phosphofructokinase confirmed that this enzyme only consisted of L-type subunits while, under normal conditions, both L- and M-type subunits are observed. The possibility of detecting specific enzyme defects in apparently non-affected cells could be of practical importance, especially in prenatal diagnosis.

Adult↗

Endogenous phosphorylation of soluble enzymes in human red cells. Cyclic 3',5'-AMP-dependent phosphorylation of phosphofructokinase without detectable regulatory effect.

ATP-depleted human red cells have been incubated in a glucose-containing medium with [32P]orthophosphate in the presence and in the absence of cyclic 3',5'-AMP and dibutyril cyclic 3',5'-AMP. Spectrin, pyruvate kinase, phosphofructokinase, glucose-6-phosphate dehydrogenase and hemoglobin A1 have been purified and analyzed by sodium dodecyl sulfate polyacrylamide gel electrophoresis. Protein-bound radioactivity has been measured from the sodium dodecyl sulfate polyacrylamide gels and the trichloroacetic acid-precipitated proteins. In the cytosol, the most intense phosphorylation was found for pyruvate kinase whose, in the presence of cyclic AMP, specific radioactivity was comparable to that of the membrane protein and spectrin. In the absence of cyclic nucleotides it was five times less phosphorylated. Phosphofructokinase was only phosphorylated when the red cells were incubated with cyclic nucleotides; the extent of phosphorylation was four times less than for pyruvate kinase. Hemoglobin, glucose-6-phosphate dehydrogenase and a contaminant protein copurified with phosphofructokinase were not phosphorylated: the 'background' of the radioactivity found for these proteins was 100 times less than for pyruvate kinase and spectrin, and 20 times less than for phosphofructokinase (+cyclic AMP).

Cyclic AMP↗

Purification of F4 phosphofructokinase from human platelets and comparison with the other phosphofructokinase forms.

The phosphofructokinase (ATP:D-fructose-6-phosphate 1-phosphotransferase, EC 2.7.1.11) tetramers F4, F3L and F2L2 have been separated from human platelets, and purified to homogeneity by affinity chromatography on Dextran Blue-Sepharose 4B. The F subunits have a molecular weight of 85 000, identical to that of the M subunits. By contrast with L-type phosphofructokinase, the F-type enzyme seems to exist predominantly in a tetrameric form and not to aggregate to high molecular weight polymers. Specific activity of pure F4 phosphofructokinase is about 140 IU/mg of protein. Immunologically, it is easy to distinguish all the basic phosphofructokinase forms (i.e. M, L and F types); nevertheless a slight immunological cross-reactivity seems to exist between all these forms.

Blood Platelets↗

Phosphofructokinase in human fetus.

The isozymic composition of phosphofructokinase (EC.2.7.1.11) from human fetal tissues has been investigated by immunological characterization, electrophoresis, purification, and SDS-polyacrylamide gel electrophoresis of the dissociated subunits. One of the characteristics of fetal tissues is the indiscriminate expression by all the cells of two or three of the basic forms of phosphofructokinase without any isozyme really corresponding to a specifically fetal form. In particular, L-type enzyme, identical to the highly regulatory enzyme synthesized by the adult hepatocytes, is found in most fetal tissues, especially in muscle and brain. M-type subunits are also detected in most of the organs and constitute the major form in fetal muscle and adrenals. F-type subunits are predominant in fetal stomach and yolk sac and are practically the only form in fetal heart. Some electrophoretic and chromatographic differences between fetal and adult M-type phosphofructokinase exist; whether their nature is genetic or posttraductional is so far unknown. Some differences (of molecular weight and chromatographic properties) are also detected between the fetal L-type subunits and enzyme from adult granulocytes. A mild proteolytic attack of the former by subtilisin transforms it into an enzyme form indistinguishable from granulocyte phosphofructokinase.

Adrenal Glands↗

G6PD deficiency with Gd(-)A like variant in a Chinese family from Cambodia.

A low rate value of G6PD was found in red blood cells from a Cambodian boy. Enzyme mapping was performed according to the WHO standard methods. G6PD presented all the characteristics of the A(-) variant encountered in the Negroes and behaved distinct from fast migrating enzymes described in China. No negro was in the ancestry of the mother.

Adult↗

Purification and partial characterization of different forms of phosphofructokinase in man.

Phosphofructokinase (ATP:D-fructose-6-phosphate 1-phosphotransferase, EC 2.7.1.11) from human muscle, brain, heart and granulocytes has been purified using a two or three step purification procedure. The main step is Blue Dextran-Sepharose 4B chromatography with selective elution of phosphofructokinase by formation of the ternary complex ADP or ATP-fructose-6-P-enzyme. Muscle and heart contain only enzyme subunits with a molecular weight of 85,000. This type of subunit is predominnant in brain, where it co-exists with subunits of about 80,000 daltons. A single type of subunits is found in the granulocytes, with a molecular weight of 80,000. Anti-muscle phosphofructokinase antiserum reacts only with M-type enzyme. Anti-granulocyte enzyme antiserum, absorbed by pure brain phosphofructokinase, exhibits a narrow specificity against the so-called L-type enzyme. Anti-brain antiserum, absorbed by pure muscle phosphofructokinase and partly purified red cell enzyme, exhibits a narrow specificity against a phosphofructokinase form predominant in fibroblasts and present in brain (F-type).

Brain↗

Phosphofructokinase (PFK) isozymes in man. I. Studies of adult human tissues.

Isozymic heterogeneity of human phosphofructokinase was investigated by means of ATP inhibition, immunoneutralization by antihuman muscle-type and antiliver-type phosphofructokinase antisera, solubility in (NH4)2SO4 solutions, and starch gel and polyacrylamide slab gel electrophoresis. The enzymes studied by these methods were purified from various normal and malignant human adult tissues by chromatography on blue Dextran Sepharose 4 B columns. From the results of these studied we suggest that three basic phosphofructokinase isozymes could exist: muscle-type, fibroblast-type, and liver-type isozymes. Muscle-type isozyme is the single form found in adult muscle, and is involved in the enzymes from heart, brain, red cell, and testis. Fibroblast-type isozyme is found mainly in the placenta, fibroblasts kidney, and some malignant tissues. Liver-type phosphofructokinase seems to be very definitely the predominant form in mature polymorphonuclear cells, platelets, and liver. Testis and red cell phosphofructokinase enzymes definitely include msucle-type aand liver-type subunits, associated in various hybrid forms.

Electrophoresis↗