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J C Dreyfus

Publications and source records attributed to J C Dreyfus.

At least 37 records · Page 2Linked to original sources

Evidence for the presence of beta-subunit of hexosaminidase in a case of Sandhoff disease using a blotting technique.

Hexosaminidases, lysosomal enzymes whose deficiency is responsible for several genetic disorders, exist as two major forms: form A, containing two types of subunits alpha and beta; and form B, containing only beta subunits. We have used a technique involving successively electrophoresis of denatured proteins, transfer (blotting) onto nitrocellulose, and labelling by appropriate antibodies raised against the dissociated forms of hexosaminidases A and B. This technique allows the detection of alpha and beta subunits in crude extracts of normal tissues. The presence of beta chains was demonstrated in the liver of a fetus affected with Sandhoff's disease, deficient in functional hexosaminidases A and B.

Electrophoresis↗

Purification of human liver uridylyl transferase and comparison with the erythrocyte enzyme.

Uridylyl transferase (UDP glucose: alpha-D-galactose 1 phosphate uridylyl transferase, EC 2.7.7.12) has been purified 1350-fold from human liver to complete homogeneity. The purification procedure involved ammonium sulfate fractionation, batch treatment, chromatography on DEAE-cellulose, hexylagarose and hydroxylapatite. The specific activity of the homogeneous enzyme was 27 units/mg protein. The liver enzyme was compared to the red cell enzyme previously purified by us. The liver enzyme was similar to the red cell enzyme with respect to subunit molecular weight, kinetic studies and immunological properties. Differences in electrophoretic behaviour were found: the liver transferase has a more basic pI (between 5.5 and 5.8) than that of the erythrocyte enzyme (pI between 5.0 and 5.45). It is very likely that the liver uridylyl transferase and the red blood cell transferase are the same enzymes with post-translational modifications.

Chromatography, DEAE-Cellulose↗

Absence of functional messenger RNA for glycogen phosphorylase in the muscle of two patients with McArdle's disease.

(1) Two unrelated cases of McArdle's disease (glycogen storage disease type V, deficiency in muscle-type glycogen phosphorylase, EC.2.4.1.1) with no detectable inactive protein, and two heterozygous relatives of one patient, have been investigated for the presence or absence of functional messenger RNA. Methods were developed and scaled down to be compatible with clinical-size biopsies. (2) Total muscle RNA was prepared and translated in a rabbit reticulocyte cell-free system. Neosynthesized products were isolated by immunoaffinity microchromatography. Phosphorylase was compared with control enzymes neosynthesized and purified under the same conditions. (3) No functional mRNA for phosphorylase could be detected in the muscles of the two patients. A decreased amount of messenger for phosphorylase, compared with the control enzymes, was found in the muscles of the two heterozygotes. (4) Exploration of functional messenger RNA in clinical enzymopathies should be readily adaptable to a number of enzymatic diseases.

Adolescent↗

Molecular studies on galactose 1 phosphate uridylyl transferase from normal and mutant subjects. An immunological approach.

The mutant forms of uridylyl transferase of eight galactosemic patients and two 'Rennes' variants were characterized with regard to the presence and level of immunoreactive protein, the apparent subunit molecular weight and the isoelectric point. Semi-purified haemolysates were studied by various electrophoretic techniques, then proteins were electrophoretically transferred on to nitrocellulose filters. They were treated with specific anti-transferase antibodies, and then with radioiodinated protein A, followed by autoradiography. We have found that: in all cases, a cross-reacting material was detectable, with a molecular subunit size of 46 000, indistinguishable from that of controls. a biochemical heterogeneity of the mutant enzyme was found: the amount of apparent immunologically reactive protein varied from 20 to 100% of that of controls; electrophoretic experiments performed on two 'Rennes' variants showed an increased negative charge.

Adolescent↗

Protein ADP-ribosylation in rat liver cytosol.

ADP and poly ADP-ribosylation are post-translational modifications of proteins which have been reported to occur essentially in eucaryotic nuclei. This phenomenon has been shown to interfere with a great variety of biological functions (cell differentiation, DNA repair, malignant transformation...). In this paper, we demonstrate for the first time that ADP-ribosylation occurs also in cytosol (120 000 g supernatant) and that several cytosolic proteins can be ADP-ribosylated in rat liver.

Adenosine Diphosphate Ribose↗

Reactivating factors of human alpha-mannosidase mutant.

In a previous study, we compared the alpha-mannosidase from mannosidosis tissues to that from normal one and we characterized the mutant. In this work, we show that the mutant inactivation by dialysis is reversible in different conditions and we investigate the nature of mannosidosis reactivating factors. The results obtained on pathological tissue by dialysis and by addition of dialysis fluid (DF), pronase treated DF, amino acid mixture, bivalent ions: Ca++, Zn++, Mg++, Co++ DF containing EDTA or DF heated to 600 degrees C suggest the reactivating factor includes both peptides and ions.

Carbohydrate Metabolism, Inborn Errors↗

Two different species of messenger RNAs specify synthesis of M1 and M2 pyruvate kinase subunits.

A study was performed to determine whether M1 and M2 pyruvate kinases were synthesized under the direction of one or two messenger RNAs. We compared M1 and M2 pyruvate kinases purified from fresh tissues with those neosynthesized under the direction of messenger RNAs from tissues synthesizing either M1 or M2. RNA was isolated from rat muscle, lung, spleen and kidney by ethanol precipitation in 7 M guanidium chloride, translated in rabbit reticulocyte system and newly-synthesized pyruvate kinase subunits were purified by microimmunoaffinity chromatography. Pyruvate kinase from fresh muscle and spleen was purified in one step by a similar process. Muscle and spleen RNA directed the synthesis of M subunits with molecular weights of approx. 61000 and 62000, respectively, the same as those of the corresponding fresh tissue monomers. In addition, peptide maps obtained by partial digestion of neosynthesized M1 and M2 with V8 protease from Staphylococcus aureus confirmed that these polypeptides were clearly different.

Animals↗

Prenatal diagnosis of a heterozygote for mucopolysaccharidosis type VII (beta-glucuronidase deficiency).

We had the opportunity of investigating a case (BK) of a severe form of mucopolysaccharidosis with nearly total deficiency of beta-glucuronidase in serum, leucocytes and fibroblasts. We here report results obtained by prenatal diagnosis of a clinically normal child (BK's sister), and point out the difficulty in interpreting a heterozygous level of beta-glucuronidase activity in cultured amniotic cells. Four successive passages of amniotic cells were tested for beta-glucuronidase and alpha-mannosidase activity in at-risk and control cells. In different passages, enzyme activity was between 8 and 49 per cent of controls but 2 to 18 times higher than fibroblasts from the affected brother (BK). The highest activity was observed in the first passage and the lowest in the third. The electrophoretic separation of GAGS from at-risk amniotic fluid showed a normal pattern. We discuss the correlation between enzyme levels in different passages of cultured cells and that found in leucocytes and fibroblasts from the propositus and parents. From a practical point of view, we conclude that the first passage gives the most reliable results for prenatal diagnosis.

Adult↗

Molecular studies of liver aldolase B in hereditary fructose intolerance using blotting and immunological techniques.

Hereditary fructose intolerance is due to a deficiency of liver aldolase (aldolase B). Little is known about its molecular mechanisms. We have tried to demonstrate the presence of the molecule and have explored the possibility of genetic heterogeneity. Liver samples from fifteen cases of hereditary fructose intolerance due to aldolase B deficiency were studied by various electrophoretic techniques. After electrophoresis on polyacrylamide gels, proteins were electrophoretically transferred on to nitrocellulose filters. They were treated with specific antialdolase B antibodies, and then with radioiodinated protein A, followed by autoradiography. Investigations included: (a) sodium dodecyl sulphate electrophoresis, in order to detect the presence of immunologically reactive molecules and to estimate the subunit size; (b) attempts to discover charge anomalies of the native molecule and of its subunits, by the use of: Isoelectric focusing of the native enzyme. Isoelectric focusing and non-equilibrium pH gradient electrophoresis (NEPHGE) after dissociation in urea. The major results were the following: (1) In all cases a cross-reacting material was found, with a molecular subunit size of 38000, indistinguishable from that of controls. (2) Evidence for molecular heterogeneity of the disease was provided by two types of data: amount of apparent immunologically reactive protein, which varied from less than 3% to 100% of that of controls; and charge data, aldolase B from seven patients showing an increased negative charge and from one patient a normal charge.

Carbohydrate Metabolism, Inborn Errors↗

Elevated NAD(P) glycohydrolase activity: a possible enzymatic marker for malignancy in Burkitt's lymphoma cells.

A comparative analysis of enzymatic activities has been performed on 47 human continuous lymphoid lines: 22 tumors derived from Burkitt's lymphoma lines, 6 other lymphomatous long-term cultures, and 19 nonmalignant ties determined on the cell extracts. 4 showed no significant differences between the various lines. They included adenosine diphosphoribose incorporation, glucose-6-phosphate dehydrogenase, cyclic-AMP phosphodiesterase, and glutathione reductase. However, striking differences of activity were found for the enzyme, NAD(P) glycohydrolase (EC 3.2.2.6). Activity levels were, as a mean, four times higher in Burkitt's lymphoma-derived cell lines than in nonmalignant control lines, and the difference was highly significant (p less than 0.02). All Burkitt cell lines containing translocations of chromosome 8 with either chromosomes 2, 14 or 22 showed an increased activity. The specificity and significance of this possible enzymatic marker of Burkitt's lymphoma cells is discussed.

3',5'-Cyclic-AMP Phosphodiesterases↗

Human amniotic fluid alpha-glucosidase.

Amniotic fluid in midpregnancy contains significant alpha-glucosidase activity. This enzyme is distinguishable from the lysosomal acid alpha-glucosidase, deficiency of which is associated with Pompe's disease. The two enzymes differ in optimum pH, thermal stability, electrophoretic migration, isoelectric point, molecular mass, and immunological response. Amniotic alpha-glucosidase is also different from the classical neutral form. Immuno-cross reactions suggest that the amniotic fluid enzyme has a double fetal origin: renal and intestinal. It seems that alpha-glucosidase in amniotic fluid is linked to lipids.

Amniotic Fluid↗

Calmodulin ligands. The interaction of muscle phosphorylase kinase with phosphodiesterase. Comparison of calmodulin ligands in muscle extracts from normal and phosphorylase kinase-deficient mice.

Interactions between phosphorylase kinase (ATP:phosphorylase-b phosphotransferase, EC 2.7.1.38) and calmodulin were studied with pure preparations of muscle phosphorylase kinase, and with crude extracts from muscles of control (C57 Black) and deficient (ICR/IAn) mice, which lack muscle phosphorylase kinase activity. Calmodulin was determined by its ability to stimulate a calmodulin-dependent phosphodiesterase. The amount of calmodulin bound to phosphorylase kinase in muscle extract was estimated to a maximum of 30% of the total amount of calmodulin. In the muscle of the deficient strain a decrease of 35% in the total amount of calmodulin was observed. This correlates with the absence of the calmodulin fraction specifically bound to phosphorylase kinase. From sucrose gradient studies we demonstrated that in the presence of Ca2+ the amount of calmodulin bound to phosphorylase kinase was enhanced, compared to the control in the presence of EGTA. This observation was made both in crude extracts and in pure phosphorylase kinase preparations. Sucrose gradient also showed that muscle phosphorylase kinase can be dissociated to low molecular species when extracts are made in the presence of Ca+; this dissociation was found to be related to a Ca2+-dependent proteolytic effect.

Animals↗

Testosterone secreting adrenal cortical adenomas.

We report the hormonal and radiological evaluation of two cases of adrenal cortical adenomas that secreted testosterone exclusively. We discuss some of the pitfalls in the diagnosis of this lesion, and summarize the current knowledge of the characteristic hormonal features in the two cases and the 12 cases previously reported.

17-Ketosteroids↗

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↗