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Biomedical subjects

M L Sharma

Publications and source records attributed to M L Sharma.

At least 91 records · Page 5Linked to original sources

Hypotensive activity of some dihydroxycoumarins and their congeners.

Evaluation of the hypotensive activity of dihydroxy coumarins and their congeners reveal that the naturally occurring dimethoxy coumarin Scoparone has maximal activity, more significant than L-alpha-methyl dopa. Structure activity relationship studies are reported with an attempt to offer a probable mechanism of action.

Animals↗

Enzymatic degradation of succinyl-coenzyme A by rat liver homogenates.

When a dilute suspension of the mitochondrial fraction of rat liver homogenates was incubated with chemically synthesized succinyl-CoA, a product was rapidly formed which was retained at pH 3.9 on Dowex 50 (H+). Although its acid-base properties were indistinguishable from those of epsilon-aminolevulinic acid, the product did not form a pyrrole with acetylacetone, nor was its enzymatic formation dependent on added glycine. The enzyme which cleaved succinyl-CoA to the epsilon-aminolevulinic acid-like product was inhibited by phenylmethyl sulfonylfluoride. The first substance formed by the peptidase was the unstable thioester of succinic acid and cysteamine which underwent rearrangement to the more stable N-succinyl cysteamine above pH 4.0. It is apparent that the assay of epsilon-aminolevulinic acid synthetase (EC 2.3.1.37) by the ion-exchange method of Ebert et al. (Ebert, P.S., Tschudy, D.P., Choudhry, J.N. and Chirigos, M.A. (1970) Biochim. Biophys. Acta 208, 236--250) can yield erroneous results with succinyl-coenzyme A as substrate, especially when incubations are carried out for less than 25 min.

Acyl Coenzyme A↗

Enzymatic formation of glutathione-citryl thioester by a mitochondrial system and its inhibition by (-)erythrofluorocitrate.

A soluble extract of the mitochondrial compartment composed of the inner membrane and matrix catalyzes the enzymatic synthesis and hydrolysis of the 1:1 adduct of citric acid and glutathione. The adduct was identified as the thioester by isolation with single and double isotope labeling ([(14)C]citric acid and [(35)S]glutathione) and by conversion to the monohydroxamate of citric acid and comparison with the synthetic product by thin layer chromatography and high voltage electrophoresis. The enzymatic formation of the thioester (pH optimum 7.39 at 30 degrees ) requires oxidized glutathione and citrate; both substrates exhibit a Michaelis-Menten kinetics. During the enzymatic reaction equimolar quantities of thioester and glutathione sulfinic acid are formed. After gel filtration or salt fractionation the enzyme system requires Mn(2+) (or Mg(2+), which is less effective) for maximal activity. When extracts of mitoplast are tested, the time course of reaction is biphasic due to the rapid synthesis of the product by the thioester-forming system (molecular weight 171,000) followed by its decay by the hydrolase (molecular weight 71,000). The two systems were separated by molecular filtration on Sephadex G-200 and by precipitation with (NH(4))(2)SO(4). The thioester-forming system is inhibited by preincubation with 0.5 mM mersalyl. Other inhibitors are 1,2,3-propane tricarboxylic acid, 10 mM Ca(2+), 200 mM K(+), and the free radical trapping agent, phenazine methosulfate. The citrate-glutathione thioester formation is irreversibly and specifically inhibited by (-)erythrofluorocitrate (50% inhibition at 25 pmol of added fluorocitrate per mg of protein), which forms a trichloroacetic acid-stable adduct with the enzyme protein (at 50% inhibition, 0.8 pmol is bound to 1 mg of protein). Synthesis of malyl-glutathione thioester by inner membrane vesicles is selectively inhibited by (-)erythrofluoromalate.

Animals↗

Cerebral hydatid cysts in central India.

Four cases of hydatid cysts of the brain are reported. All of the patients were under 18 years of age. One presented with a localized erosion of the skull and a characteristic cracked-pot sign. Angiographic findings were most useful in their diagnosis.

Adolescent↗

Covalent modification of proteins by metabolites of NAD+.

Covalently bound adducts of ply(L-lysine), bovine serum albumin, lysine rich histone (f1) and deoxyribonucleotidase I (DNase, EC 3.1.4.5) with adenosine diphosphoribose and ribose-5-phosphate were prepared at pH 7.4 and 9.5. Macromolecular adducts of bovine serum albumin and histone (f1) were isolated by gel filtration and electrophoresis. Reduction of products by NaBH4 did not dissociate the ribose-5-phosphate moiety from macromolecules. Specific introduction of 3H into the adducts also indicated Schiff base formation. The reaction of ribose-5-phosphate with epsilon-amino groups of histone (f1) approached 70-90% saturation. Spermine and spermidine also react with adenosine diphosphoribose and ribose-5-phosphate to form 1:1 Schiff bases. It is proposed that high turnover of cellular NAD+ is the source of aldehydic metabolites which may regulate macromolecular metabolism by covalent modification of nuclear proteins, whereas polyamines serve as modulators of this control cycle.

Adenosine Diphosphate Sugars↗