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H Baum

Publications and source records attributed to H Baum.

At least 127 records · Page 7Linked to original sources

Evidence for a halothane-dependent cyclic flux of calcium in rat-liver mitochondria.

The previously reported (Hall et al., Biochem. Soc. Trans. 1973) halothane-dependent, calcium-induced loss of respiratory control in rat liver mitochondria is relatively specific to calcium; the effect of strontium ions is much smaller, and comparable additions of potassium salts have no effect on mitochondrial respiration on succinate in the presence of halothane. The calcium-dependent loss of respiratory control can be prevented, or reversed, respectively, by the prior or subsequent addition of agents that either chelate extramitochondrial Ca2plus or inhibit calcium accumulation, or that inhibit the efflux of accumulatec calcium. These results suggest that the halothane-dependent, calcijm-induced loss of respiratory control is due to a cyclic flux of calcium uptake and release.

Animals↗

The mechanism of the halothane-dependent efflux of calcium from rat-liver mitochondria.

The halothane-dependent, calcium-induced loss of respiratory control in rat liver mitochondria [1, 2] is Mg2plus -dependent and is accompanied by an enhanced mitochondrial swelling. It is suggested that this swelling reflects an increase in calcium activity in the matrix space, due to a decrease in binding of the accumulated cation. This change in the partition of intramitochondrial calcium is correlated with an inhibition by halothane of energy-independent, calcium-induced swelling. The enhanced swelling associated with the active accumulation of calcium in the presence of halothane does not lead to a marked increase in permeability to other ions. Nevertheless, under conditions of energised calcium uptake, and in the presence of Mg2plus, a halothane-dependent, ruthenium red-insensitive efflux of calcium is observed. This is consistent with the proposed halothane-dependent increase in the matrix activity of accumulated Ca2plus. It is suggested that this mechanism accounts for the previously postulated [2] futile cycle of calcium uptake and release induced by halothane in rat liver mitochondria.

Animals↗

Progesterone-induced lysis of rat kidney lysosomes as studied by changes in light-absorbance.

1. A rat kidney lysosomal fraction was prepared by the method of Maunsbach (1966) and characterized by its content of representative marker enzymes for lysosomes, mitochondria, peroxisomes and endoplasmic reticulum. 2. It was shown that both pH-dependent and progesterone-induced lysis lead to a decrease in the E(520) of suspensions of this preparation. This decrease parallels quantitatively and temporally the release of soluble acid phosphatase. 3. It is suggested that E(520) measurements are a valid method for the continuous measurement of changes in lysosomal integrity. 4. As an example, results are included which demonstrate the ability of Zn(2+) to stabilize lysosomes against spontaneous and progesterone-induced lysis.

Acid Phosphatase↗

The effect of vitamin E on the oxidation state of selenium in rat liver.

1. (75)Se as Na(2) (75)SeO(3) was administered orally to rats under different nutritional conditions. 2. The selenium found in the liver subcellular organelle fractions was present in at least three oxidation states: acid-volatile selenium, assumed to be selenide, zinc-hydrochloric acid-reducible selenium, assumed to be selenite, and higher oxidation states of selenium and organic derivatives, called selenate for convenience. 3. The proportion of the total selenium present as selenide present as selenide is susceptible to oxidation in vitro, which can be prevented by the addition of antioxidants in vitro. 4. The proportion of selenide is also directly related to the vitamin E status of the rats, and treatment of vitamin E-deficient rats with vitamin E results in an increase in the proportion of selenide. 5. Freezing the liver in situ before preparation of the organelle fractions did not alter the susceptibility of the selenide proportion to dietary vitamin E, indicating that the observed effects occur in vivo and not as a result of oxidation post mortem. 6. Intravenous administration of Na(2) (75)SeO(3), to rats whose alimentary tract was partially sterilized by neomycin treatment, gave a similar result to that in paragraph 4, indicating that the reduction of selenite to selenide probably occurs in vivo, and that intestinal micro-organisms are not responsible. 7. Treatment of vitamin E-deficient rats with silver produced a fall in the total (75)Se content of the liver, an effect only partially reversed by vitamin E administration. The proportion of the total selenium present as selenide was also lowered by the treatments with silver, and vitamin E significantly reversed this trend in most cases. 8. These results are consistent with the hypothesis that the active form of Se may be selenide and that the selenide may form part of the active centre of an uncharacterized class of catalytically active non-haem-iron proteins that are protected from oxidation in vivo by vitamin E.

Animals↗