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Biomedical subjects

M J Dimino

Publications and source records attributed to M J Dimino.

12 recordsLinked to original sources

Increases in mitochondrial steroidogenesis after short term incubation of porcine ovarian follicles with luteinizing hormone.

[4-14C]Cholesterol side chain cleavage, progesterone synthesis, and cytochrome oxidase activities were measured in mitochondria from unincubated and short term incubated large (8-10 mm) follicles isolated from porcine ovaries. Compared to the activity of mitochondria from unincubated follicles, specific [4-14C]cholesterol side chain cleavage activity in mitochondria from follicles incubated with LH (0.05 microgrogram/ml) did not change significantly after 12 h, but increased almost 2-fold after 18 h and 5-fold after 24 h. Also, specific mitochondrial progesterone synthesis activity increased dramatically after incubation of follicles for 24 h with LH. In comparison, mitochondria prepared from follicles incubated without LH showed no significant change in specific [4-14C]cholesterol side chain cleavage or progesterone synthesis activities after 18 h of incubation. While both of these activities increased after incubating follicles 24 h without LH, the values were significantly lower than those observed for preparations from follicles incubated with LH. In contrast to these changes in mitochondrial steroidogenesis, specific cytochrome oxidase activity in mitochondria did not change after incubation of follicles without or with LH. It is concluded that incubation of follicles with LH stimulates the development of mitochondrial steroidogenesis but initially does not affect some components of the respiratory chain.

Animals

Some properties of rat liver mitochondrial RNA polymerase.

A rapid method suitable for purifying large amounts of mitochondria from rat liver using isopycnic zonal centrifugation is described. The RNA polymerase isolated from the purified mitochrondria was found associated with one peak when resolved by DEAE Sephadex chromatography. The enzyme was next fractionated on a phosphocellulose column followed by glycerol gradient centrifugation. A 600-fold purification was achieved when the enzyme was finally filtered through agarose gel. This final enzyme fraction consisted of one polypeptide chain as shown by polyacrylamide gel electrophoresis profiles. The enzyme has a greater preference for poly [d(A-T)] templates than for rat liver mitochondrial DNA. Inhibition of the enzyme activity required high concentrations of the inhibitors. The resistance of the enzyme to alpha-amanitin indicated that there was no contamination from nuclear RNA polymerase II. The conclusion is drawn that the mitochondrial RAN polymerase activity is associated with a single polypeptide.

Amanitins

Studies on oxidative phosphorylation and steroidogenesis by ovarian mitochondria after gonadotropic stimulation.

No differences in oxidative phosphorylation or in the per cent of [4-14C]progesterone were found in ovarian mitochondria of immature rats after treatment with 20 IU of pregnant mare serum gonadotropin (PMSG) iv 30 min before killing. However, treatment of immature rats with 20 IU of PMSG sc 54 h prior to killing decreased the ADP:O ratio and increased the per cent of [4-14C]cholesterol conversion. Electron microscopic studies showed that mitochondria with lamellar cristae were prominent in ovaries of untreated rats, while large pleomorphic mitochondria and mitochondria with tubulovesicular cristae dominated in ovaries of PMSG-treated rats. Ovarian homogenates separated by zonal centrifugation showed three peaks od cytochrome oxidase activity which shifted to the heavier end of the gradient after PMSG treatment. These studies suggest that PMSG treatment influences ovarian mitochondria, possibly by stimulating the synthesis of additional functional components and/or the biogenesis of new mitochondria. Aminoglutethimide addition to bovine luteal mitochondria decreased steroidogenesis by 60% when succinate was used as substrate. However, there was a 16% increase in the ADP:O ratio, apparently due to a decrease in oxygen utilization. When oligomycin was added to luteal mitochondria, there was a 30% decrease in the ACP:O ratio but a 300% increase in [4-14C]cholesterol conversion. Dinitrophenol also decreased mitochondrial steroidogenesis. These results suggest that energy obtained from succinate oxidation can be diverted from phosphorylation to support steroidogenesis.

Age Factors

Progesterone synthesis by luteal mitochondria in vitro.

Mitochondria were prepared from bovine corpora lutea by differential centrifugation and were purified by isopycnic zonal centrifugation. A marked increase in specific cytochrome oxidase activity and a marked decrease in specific DNA and RNA content indicate that the procedure resulted in a highly purified preparation of mitochondria. These organelles had a higher rate of conversion of [4-14C] cholesterol to [4-14C] progesterone than did mitochondria separated only by differential centrifugation, suggesting that luteal mitochondria contain the enzyme systems required for progesterone synthesis.

Animals

Transmural mitochondrial differences in myocardium.

Two functional mitochondrial populations with different sedimentation rates (S) were obtained from homogenates of canine myocardium by rate zonal centrifugation using an iso-osmotic Ficoll gradient. To ascertain the origin of these populations, the left ventricular wall of normal myocardium was divided into subepicardial (outer one-third), intermediate (middle on-third), and subendocardial (inner one-third) layers. The slow S mitochondria comprised 75% of the mitochondrial population of the subepicardial layer. In contrast, the fast S mitochondria contributed 65% of the subendocardial population. Intermediate layer mitochondria resembled those of the subepicardium. Mitochondria isolated from the three layers had approximately the same density, as shown by isopycnic zonal centrifugation. These studies indicate that mitochondria from subepicardial and subendocardial layers of normal myocardium differ in size and shape but not in density. Electron micrographs (EM) of the subepicardium showed many mitochondria as long as 4 to 8 sarcomeres. Mitochondria from the outer and inner layers of normal myocardium had the same oxidative phosphorylation parameters. Acute myocardial infarction, lasting 1 or 2 hr, resulted in the selective loss of the fast S mitochondria. Because the fast S mitochondria are prevalent in the subendocardium, these results may explain the greater vulnerability of this layer to anoxia.

Animals