S S Katyare
Articles written in Journal of Biosciences
Volume 14 Issue 4 December 1989 pp 329-339
Treatment of rats with T3 resulted in a significant decrease in body weight, while the heart weight increased. T4 treatment had less marked effect on body weights but resulted in decreased heart weights. Serum T4 levels decreased significantly with simultaneous increase of T3 level following T3 treatment, whereas with T4 treatment, levels of both T4 and T3 increased in the serum. Low doses of T3 (0.5 µg ) caused decrease in mitochondrial protein content while high dose of T4 (1 µg), caused significant increase in mitochondrial mass. The state 3 respiration rates were significantly depressed following T3 and T4 treatments, in a substrate specific manner with the effects being more pronounced with T3; these responses with T4 were dose-dependent for succinate and ascorbate + N,N,N′,N′-tetramethyl-
Volume 14 Issue 4 December 1989 pp 341-349
Altered kinetic properties of rat heart mitochondrial enzymes following experimental-thyrotoxicosis
B N Dave F R Billimoria S S Katyare
Effects of T3- and T4-induced thyrotoxicosis on temperature-dependent Arrhenius kinetics of succinate oxidase and Mg2+- and Mg2+ + 2,4-dinitrophenol-dependent ATPase activities in rat heart mitochondria were examined, For succinate oxidase system, treatment with T3 and T4 caused increase in the energy of activation in high temperature range in a dose-dependent manner. For low temperature range, increase in energy of activation was apparent only with higher doses of the hormones; with low doses a small but reproducible decrease was evinced. The phase transition temperature decreased significantly under these conditions. For the Mg2+- and Mg2++2,4-dintro-phenol-dependent-ATPase activities, the activation energy values in high temperature range decreased in general. Activation energy values in low temperature range recorded a generalized increase in the Mg2+-ATPase enzyme system while the value did not change significantly for the Mg2+ + 2,4-dinitrophenol-ATPase; phase transition temperature registered a small but reproducible decrease under these conditions. The results are suggestive of increased membrane fluidization possibly through increased proportion of unsaturated fatty acids. The differential effects seen for succinate oxidase and ATPase systems are consistent with different lipid protein domains of these enzyme systems.
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