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J Cumps

Publications and source records attributed to J Cumps.

18 recordsLinked to original sources

Enzymic N-demethylation reaction catalysed by red blood cell cytosol.

Red blood cell cytosol promotes enzymic N-demethylation reactions which display typical Michaelis-Menten kinetics with respect to N-methylaniline as substrate. The demethylase activity is linked with hemoglobin (Hb) and is enhanced in the presence of NADH and the NADH-methemoglobin reductase system. It has been adduced that Hb in its oxygenated form is involved in the reaction.

Aniline Compounds

The use of a non-linear regression approach for the analysis of the ouabain-K+ interaction with (Na+ + K+)-ATPase from guinea pig and rat hearts.

1. The interaction between ouabain and K+ and their effects on (Na+ + K+)-ATPase activity were studied using microsomes from guinea pig and rat heart. 2. Microsomes were incubated in the presence of various concentrations of K+ and ouabain and ATPase activity was estimated by measuring the inorganic phosphate liberated. The experimental data were analyzed statistically by micro-computer, using a non-linear regression program based on the steepest descent technique. 3. The experimental data were best fitted by a model which assumes that ouabain acts like a mixed inhibitor with respect to the apparently cooperative K+ activation of (Na+ + K+)-ATPase. This quantitative approach provided estimates (with approximate standard deviations) of all the parameters involved in the model. 4. The inhibition constant for the uncompetitive term of the effect was 7- to 9-fold higher than the inhibition constant for the competitive term for both the guinea pig and rat heart preparations. 5. The present results indicate that graphical analyses are helpful for illustrative purposes but suggest that a computerized, non-linear regression program simultaneously analyzing all the non-linearized data should be used to quantify the complex kinetic parameters and to discriminate objectively among possible models.

Animals

Michaelis--Menten kinetic analysis of the hepatic microsomal benzpyrene hydroxylase from control, phenobarbital- and methyl-3-cholanthrene-treated rats.

The sensitive fluorimetric assay for hydroxy-3-benzpyrene (3-OH-BP) described by Dehnen et al., was used to study the effect of microsomal membrane concentration of the benzpyrene hydroxylase activity. Microsomes from phenobarbital (PB) and methyl-3-cholanthrene (3-MC)-treated rats were used in comparison with the microsomal fraction from control animals. At very low protein concentration, benzpyrene hydroxylase follows as Michaelis--Menten type kinetics. When the concentration of microsomal membrane is higher than a minimal value (+/- 6 mug protein/ml) the Km increases with increasing concentration of protein due to competitive inhibition by reversible and non-specific binding of the substrate. The Ki's for such a binding have been calculated. Pretreatment of rats with 3-MC selectively shortens the time linearity, decreases the Ks value, and has no effect on Vmax, while the administration of PB prolongs the time linearity, decreases Vmax and does not modify the Ks. 3-MC and PB specifically act on cytochrome P-450 and do not modify the physico-chemical properties of the microsomal membrane as measured by the non-specific binding of benzpyrene (BP).

Animals

A new method for the purification of cytochrome-P450 from human liver microsomes.

A procedure for the solubilization and purification of cytochrome-P450 (cyt-P450) from human liver microsomes is described. Successive treatment of microsomes with protease XXVII and 3-(3-cholamidopropyl)dimethylammoniopropanesulphonic acid gave a solubilized cyt-P450 in more than 80% yield and with a three-fold increase in specific activity. With this treatment it was possible to eliminate 80% of cytochrome-b5 and 75% of NADPH cyt-P450 reductase. The solubilized cyt-P450 was filtered on a Sephacryl-200 column and then subjected to high performance liquid chromatography with a Mono-P column (chromatofocussing). The recovery of separated cyt-P450 was about 50% with a specific activity of 11.5 nmol cyt-P450/mg protein. Also with this technique it was possible to determine the isoelectric points of cyt-P450. These results allowed us to confirm the usefulness of our method, for the study the cyt-P450 from surgical biopsies.

Biopsy

[Conditions for analysis of cytochrome p-450 activity in human liver microsomes].

Multiples forms of CYT-P450 have been isolated from human liver microsomes. The distribution of CYT-P450 could be correlated with pathologic and influence the individual's response to therapeutic drugs and susceptibility to the toxic and cancerogenic effects of environmental pollutants. The aim of the this work is to determine the amounts of CYT-P450's in small samples from human liver such as biopsies and eventually to correlate them with pathology. For these reasons, tests providing informations about the distribution of CYT-P450 in individual subjects are very important. In this study we have reviewed the method for measuring the activity of CYT-P450 and the dosage of Benzopyrene hydroxylase. We modified some of these methods for the study of CYT-P450 from human liver microsomes.

Cytochrome P-450 Enzyme System

[Purification of cytochrome P-450 and NADPH cytochrome p-450 reductase from human liver].

Two methods for the purification of cytochromes-P450 from microsomes of human liver are described. Method A: Cyt-P450 were solubilized from microsomes using a non ionic detergent, the Lubrol. The Cyt-P450 were purified by affinity, hydrophobicity followed by ion-exchange chromatography on DEAE-5PW column (HPLC) with an overall yield of 18% and a specific activity of 10 nmole/mg of protein. The recovery of NADPH Cyt-P450 reductase by method A (affinity) is about 60% with a specific activity of 16.2 U.I./mg of protein. Method B: Cyt-P450 were solubilized from microsomes using a zwitterionic detergent, the CHAPS. Cyt-P450 were filtered and separated by chromatofocusing on Mono-P column (HPLC). By this method it was possible to increase strongly the specific activity keeping a yield of 50% of Cyt-P450. Also it was possible to apply this method to small samples of human liver like biopsies (0.5 to 2.5 g).

Cytochrome P-450 Enzyme System

[Enrichment of cytochrome P-450 in human liver microsomes by the action of proteases].

Human liver microsomes have been partially enriched in cytochrome P450 using a simple and rapid method. Microsomes were digested with protease XXVII (40 micrograms/nmole cyt. P450), then incubated with CHAPS, a zwitterionic detergent (25 mg/nmole cyt. P450) in combination with 0.07% protamine sulfate and the solubilized cyt. P450 was separated by ultracentrifugation. By this method, about 35% of total microsomal protein was solubilized with more than 80% of cyt. P450. This technique increases the specific activity of cyt. P450 by three fold.

Cholic Acids