Mechanisms of l-triiodothyronine-induced inhibition of synaptosomal na +-k+-atpase activity in young adult Rat Brain Cerebral Cortex

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Abstract

The role of thyroid hormones (TH) in the normal functioning of adult mammalian brain is unclear. Our studies have identified synaptosomal Na +-K+-ATPase as a TH-responsive physiological parameter in adult rat cerebral cortex. L-triiodothyronine (T and L-thyroxine (T both inhibited Na+-K+-ATPase activity (but not Mg 2+-ATPase activity) in similar dose-dependent fashions, while other metabolites of TH were less effective. Although both Tand the β-adrenergic agonist isoproterenol inhibited Na+-K+-ATPase activity in cerebrocortical synaptosomes in similar ways, the β-adrenergic receptor blocker propranolol did not counteract the effect of T Instead, propranolol further inhibited Na+-K+-ATPase activity in a dose-dependent manner, suggesting that the effect of Ton synaptosomal Na +-K+-ATPase activity was independent of β-adrenergic receptor activation. The effect of Ton synaptosomal Na+-K +-ATPase activity was inhibited by the α 2 -adrenergic agonist clonidine and by glutamate. Notably, both clonidine and glutamate activate G i -proteins of the membrane second messenger system, suggesting a potential mechanism for the inhibition of the effects of TH. In this paper, we provide support for a nongenomic mechanism of action of TH in a neuronal membrane-related energy-linked process for signal transduction in the adult condition. © 2013 Pradip K. Sarkar et al.

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Sarkar, P. K., Biswas, A., Ray, A. K., & Martin, J. V. (2013). Mechanisms of l-triiodothyronine-induced inhibition of synaptosomal na +-k+-atpase activity in young adult Rat Brain Cerebral Cortex. Journal of Thyroid Research, 2013. https://doi.org/10.1155/2013/457953

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