Literature DB >> 22773774

Intracellular Na(+) and metabolic modulation of Na/K pump and excitability in the rat suprachiasmatic nucleus neurons.

Yi-Chi Wang1, Jyh-Jeen Yang, Rong-Chi Huang.   

Abstract

Na/K pump activity and metabolic rate are both higher during the day in the suprachiasmatic nucleus (SCN) that houses the circadian clock. Here we investigated the role of intracellular Na(+) and energy metabolism in regulating Na/K pump activity and neuronal excitability. Removal of extracellular K(+) to block the Na/K pump excited SCN neurons to fire at higher rates and return to normal K(+) to reactivate the pump produced rebound hyperpolarization to inhibit firing. In the presence of tetrodotoxin to block the action potentials, both zero K(+)-induced depolarization and rebound hyperpolarization were blocked by the cardiac glycoside strophanthidin. Ratiometric Na(+) imaging with a Na(+)-sensitive fluorescent dye indicated saturating accumulation of intracellular Na(+) in response to pump blockade with zero K(+). The Na(+) ionophore monensin also induced Na(+) loading and hyperpolarized the membrane potential, with the hyperpolarizing effect of monensin abolished in zero Na(+) or by pump blockade. Conversely, Na(+) depletion with Na(+)-free pipette solution depolarized membrane potential but retained residual Na/K pump activity. Cyanide inhibition of oxidative phosphorylation blocked the Na/K pump to depolarize resting potential and increase spontaneous firing in most cells, and to raise intracellular Na(+) levels in all cells. Nonetheless, the Na/K pump was incompletely blocked by cyanide but completely blocked by iodoacetate to inhibit glycolysis, indicating the involvement of both oxidative phosphorylation and glycolysis in fueling the Na/K pump. Together, the results indicate the importance of intracellular Na(+) and energy metabolism in regulating Na/K pump activity as well as neuronal excitability in the SCN neurons.

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Year:  2012        PMID: 22773774     DOI: 10.1152/jn.00361.2012

Source DB:  PubMed          Journal:  J Neurophysiol        ISSN: 0022-3077            Impact factor:   2.714


  12 in total

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3.  Role of Na⁺/Ca²⁺ exchanger in Ca²⁺ homeostasis in rat suprachiasmatic nucleus neurons.

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Journal:  Sci Rep       Date:  2017-04-04       Impact factor: 4.379

7.  Differential regulation of nimodipine-sensitive and -insensitive Ca2+ influx by the Na+/Ca2+ exchanger and mitochondria in the rat suprachiasmatic nucleus neurons.

Authors:  Pi-Cheng Cheng; Yi-Chi Wang; Ya-Shuan Chen; Ruo-Ciao Cheng; Jyh-Jeen Yang; Rong-Chi Huang
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8.  The Na+/H+-Exchanger NHE1 Regulates Extra- and Intracellular pH and Nimodipine-sensitive [Ca2+]i in the Suprachiasmatic Nucleus.

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9.  Mechanisms underlying the activity-dependent regulation of locomotor network performance by the Na+ pump.

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Journal:  Sci Rep       Date:  2015-11-06       Impact factor: 4.379

10.  Sodium bicarbonate cotransporter NBCe2 gene variants increase sodium and bicarbonate transport in human renal proximal tubule cells.

Authors:  John J Gildea; Peng Xu; Brandon A Kemp; Julia M Carlson; Hanh T Tran; Dora Bigler Wang; Christophe J Langouët-Astrié; Helen E McGrath; Robert M Carey; Pedro A Jose; Robin A Felder
Journal:  PLoS One       Date:  2018-04-11       Impact factor: 3.240

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