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Publication : BAD-dependent regulation of fuel metabolism and K(ATP) channel activity confers resistance to epileptic seizures.

First Author  Giménez-Cassina A Year  2012
Journal  Neuron Volume  74
Issue  4 Pages  719-30
PubMed ID  22632729 Mgi Jnum  J:188361
Mgi Id  MGI:5440372 Doi  10.1016/j.neuron.2012.03.032
Citation  Gimenez-Cassina A, et al. (2012) BAD-dependent regulation of fuel metabolism and K(ATP) channel activity confers resistance to epileptic seizures. Neuron 74(4):719-30
abstractText  Neuronal excitation can be substantially modulated by alterations in metabolism, as evident from the anticonvulsant effect of diets that reduce glucose utilization and promote ketone body metabolism. We provide genetic evidence that BAD, a protein with dual functions in apoptosis and glucose metabolism, imparts reciprocal effects on metabolism of glucose and ketone bodies in brain cells. These effects involve phosphoregulation of BAD and are independent of its apoptotic function. BAD modifications that reduce glucose metabolism produce a marked increase in the activity of metabolically sensitive K(ATP) channels in neurons, as well as resistance to behavioral and electrographic seizures in vivo. Seizure resistance is reversed by genetic ablation of the K(ATP) channel, implicating the BAD-K(ATP) axis in metabolic control of neuronal excitation and seizure responses.
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