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Biomedical subjects

M Potier

Publications and source records attributed to M Potier.

At least 181 records · Page 10Linked to original sources

Lipoamide dehydrogenase in Friedreich's ataxia fibroblasts.

Lipoamide dehydrogenase was measured in cultivated skin fibroblasts from twelve patients with Friedreich's ataxia and nine normal controls. No difference in specific activity, subcellular distribution and Vmax or Km was observed between patients and controls.

Cells, Cultured↗

N-Acetyl-beta-hexosaminidase isoenzymes of amniotic fluid and maternal serum. Their relevance to prenatal diagnosis of the GM2 gangliosidoses.

The isoenzymes of N-acetyl-beta-hexosaminidase were quantitated in 30 amniotic fluid and 13 maternal serum samples collected between 11 and 40 weeks of gestation using DEAE-Sephadex A-25 chromatography. Isoenzymes A and B consitituted the major components of most amniotic fluids but seven samples characterized by high N-acetyl-beta-hexosaminidase activities contained high proportion of an isoenzyme apparently identical to isoenzyme P of maternal serum. This passage of maternal serum N-acetyl-beta-hexosaminidase into the amniotic cavity could lead to false negative diagnosis of type B and type O GM2 gangliosidoses if the diagnosis rely solely upon isoenzyme analysis in amniotic fluid. However, the release of maternal enzyme into amniotic fluid seems to be restricted to the third trimester of gestation and should not interfere with prenatal diagnosis of the GM2 gangliosidoses ususally performed at an earlier stage of gestation.

Amniotic Fluid↗

Dicarboxylic aminoaciduria: an inborn error of amino acid conservation.

A 38-month-old apparently healthy male has been followed for three years because of a massive glutamic and aspartic aminoaciduria detected shortly after birth in a neonatal screening program. Amino acid clearance studies revealed the presence of renal wastage of dicarboxylic amino acids. Intestinal transport and in vitro oxidation of dicarboxylic amino acids were found to be intact. Clinical and metabolic data obtained on a previously described patient and the present case suggest that some patients with dicarboxylic aminoaciduria might have a selective renal conservation defect without clinical abnormalities, whereas others might demonstrate an additional defect in intestinal transport associated with fasting hypoglycemia.

Amino Acids, Dicarboxylic↗

A syndrome of generalized elastic fiber deficiency with leprechaunoid features: a distinct genetic disease with an autosomal recessive mode of inheritance.

Three male infants with generalized elastolysis and leprechaunoid features from two related and consanguineous parents of Italian origin died in the first year of life following severe cardio-pulmonary complications. While these children showed a decrease in elastic fibers, no degeneration was noted and histochemical as well as systemic metabolic studies were negative. It is postulated that this disease is a variant of cutis laxa or at least that the absence of granular degeneration of the elastic fibers described by Goltz is a secondary manifestation present only in older children. Prenatal diagnosis of this syndrome is not yet possible since no intracellular or biochemical changes have been identified. In view of the familial occurrence of this syndrome, and the association of specific clinical and pathological findings, we suggest that we are dealing with a distinct hereditary disorder of the connective tissue.

Abnormalities, Multiple↗

Some molecular properties of rat-liver lysosomal beta-glucuronidase isoenzymes.

The isoenzymes of rat-liver lysosomal beta-glucuronidase (beta-D-glucuronide glucuronosohydrolase (EC 3.2.1.31)) were inactivated at different rates at 0 degrees C in 3M guanidinium chloride solutions adjusted to pH 5.0 In 4 M urea buffered by 0.01 M glycylglycine, pH 7.0 isoenzymes I, III, and V were reversibly inhibited 80%. Sodium dodecyl sulfate (SDS), 0.1% in 0.01 M phosphate buffer, pH 7.0 irreversibly inhibited at 37 degrees C all five isoenzymes. Sedimentation analysis showed that loss of catalytic activity in these denaturing media is accompanied by dissociation into slower sedimenting subunits. SDS gel electrophoresis revealed that the isoenzymes are apparently tetramers made up of different proportions of subunits alpha, beta, and gamma having apparent molecular weights of 62,900, 60,200, and 58,700, respectively. The three subunits appear to be glycoproteins.

Animals↗

Fetal intestinal disaccharidases in human amniotic fluid.

Based on data from two human fetuses, a correlation exists between amniotic fluid and intestinal disaccharidase activities suggesting that the fetal intestine is the source of these amniotic fluid enzymes. Intestinal disaccharides are apparently released into the amniotic cavity by fetal defecation. As indicated by the drop of disaccharidase activities in amniotic fluid at 22 weeks gestation, defecation stops at this period of gestation.

Amniotic Fluid↗

Occurrence and properties of fetal intestinal glycosidases (disaccharidases) in human amniotic fluid.

alpha-Glucosidase, beta-glucosidase and beta-galactosidase were studied in cell-free amniotic fluid samples using corresponding 4-methylumbelliferyl-glycosides and a series of disaccharides (maltose, sucrose, trehalose, turanose, cellobiose, gentiobiose and lactose) as substrates. The glycosidases exhibited several properties of intestinal disaccharidases such as pH optimum between 5.2 and 6.4, more activity towards the disaccharides than the artificial substrates, tight association of the activities with sedimentable complexes and beta-glucosidase and beta-galactosidase activities exerted by a single catalytic site. With the disaccharides as substrates, the amniotic fluid glycosidase activities were well correlated to those reported in the literature for fetal intestine of corresponding gestational ages. The presence of intestinal disaccharidases in amniotic fluid indicates that the fetal intestine contributes to the protein and enzymes of amniotic fluid.

Amniotic Fluid↗