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Biomedical subjects

B A Callingham

Publications and source records attributed to B A Callingham.

At least 91 records · Page 5Linked to original sources

The effect of tris buffers on rat liver mitochondrial monoamine oxidase.

The effect of tris buffers upon the monoamine oxidase (MAO) activity in rat liver mitochondria has been investigated. Tris buffer was shown to inhibit MAO in a non-competitive manner with a Ki of 15-25 mM. Tyramine, 5-hydroxytryptamine and beta-phenethylamine but not benzylamine oxidations were all inhibited by tris buffer. All inhibitions, except that of 5-HT, were completely reversible. It is suggested that these effects are produced by conformational changes in the structure of the MAO. The significance of these results is discussed with respect to the use of tris buffers in the extraction and estimation of the activity of MAO.

Animals↗

The effect of age and thyroid hormones upon the ability of the chick heart to deaminate monoamines.

The effect of age and thyroid hormones upon the ability of chick heart homogenates to metabolize monoamines has been investigated. 5-Hydroxytryptamine is entirely metabolized by a monoamine oxidase (MAO) with the characteristics of MAO-A, whereas some of the tyramine and all of the benzylamine are oxidatively deaminated by a clorgyline-resistant, but semicarbazide-sensitive enzyme, with a similar subcellular distribution to that of MAO. The remainder of the tyramine deamination is brought about by MAO-A and MAO-B. The specific activities of both clorgyline-sensitive and resistant enzymes are increased by the same proportion by increase in age or by treatment with (--)-thyroxine, and decreased by 2-thiouracil. The significance of these results is discussed.

Animals↗

The influence of adrenalectomy on monoamine oxidase and NADH cytochrome c reductase in the rat heart.

The effect of adrenalectomy on the activities of monoamine oxidase (MAO), NADH cytochrome c reductase (NCR), succinate dehydrogenase, malate dehydrogenase, fumarase, NAD+ nucleosidase and acid phosphatase in homogenates of rat hearts was examined. Besides MAO only the NCR activity increased. However, both the total and the rotenone-insensitive NCR activities increased, with that of the rotenone-insensitive being about half of the total, which indicated that the effect of adrenalectomy was exerted on components of this enzyme localized on both the inner and outer membranes of the mitochondrion. The lack of effect on the other enzymes suggests that adrenalectomy has a relatively selective action on MAO and NCR, and does not work by a generalized increase in protein synthesis or by an effect on the FAD cofactor. The MAO increase was seen with a variety of substrates, and was due to a rise in Vmax without change in Km. The response to adrenalectomy in the summer differed from that seen in the winter. The possible reasons for these effects of adrenalectomy are discussed.

Adrenalectomy↗

Evidence for a clorgyline-resistant monoamine metabolizing activity in the rat heart.

When benzylamine was used as substrate, a component of the total monoamine oxidase (MAO) activity in the rat heart was found to be resistant to inhibition by clorgyline. The proportion of the total activity represented by this component, decreased as the rat grew. It was also inhibited by both semicarbazide and isoniazid but not by potassium cyanide. Inhibitor studies with MAO in subcellular fractions showed that this component was more concentrated in the microsomal and soluble fractions. However, it could not be concluded that the activity was entirely a soluble enzyme. Determination of quasi-Michaelis constants ("Km") for total benzylamine oxidizing activity revealed a high ("Km" of approximately 10(-5)M) and low ("Km" of approximately 5 X 10(-4)M) affinity component. The high affinity component was inhibited by semicarbazide and the low affinity component by clorgyline. In the presence of 10(-3)M clorgyline, the high affinity component showed substrate inhibition at higher substrate concentrations. The possibility is discussed that the clorgyline-resistant activity is due to an amine-oxidizing activity distinct from mitochondrial MAO.

Aging↗