Abstract

In recent years, cation-chloride cotransporters (CCCs) have drawn attention in the medical neuroscience research. CCCs include the family of Na+-coupled Cl- importers (NCC, NKCC1, and NKCC2), K+-coupled Cl- exporters (KCCs), and possibly polyamine transporters (CCC9) and CCC interacting protein (CIP1). For decades, CCCs have been the targets of several commonly used diuretic drugs, including hydrochlorothiazide, furosemide, and bumetanide. Genetic mutations of NCC and NKCC2 cause congenital renal tubular disorders and lead to renal salt-losing hypotension, secondary hyperreninemia, and hypokalemic metabolic alkalosis. New studies reveal that CCCs along with their regulatory WNK (Kinase with no lysine (K)), and SPAK (Ste20-related proline-alanine-rich kinase)/OSR1(oxidative stress-responsive kinase-1) are essential for regulating cell volume and maintaining ionic homeostasis in the nervous system, especially roles of the WNK-SPAK-NKCC1 signaling pathway in ischemic brain injury and hypersecretion of cerebrospinal fluid in post-hemorrhagic hydrocephalus. In addition, disruption of Cl- exporter KCC2 has an effect on synaptic inhibition, which may be involved in developing pain, epilepsy, and possibly some neuropsychiatric disorders. Interference with KCC3 leads to peripheral nervous system neuropathy as well as axon and nerve fiber swelling and psychosis. The WNK-SPAK/OSR1-CCCs complex emerges as therapeutic targets for multiple neurological diseases. This review will highlight these new findings.

Highlights

  • In recent years, cation-chloride cotransporters (CCCs) have drawn attention in the medical neuroscience research

  • Compared to their WT counterparts, SPAK KO mice display a higher nociceptive threshold [66]. They exhibit increased thigmotaxis in the open field chamber and spend significantly longer periods of time in the dark area of the light/dark box, indicating an anxiety-like phenotype [66]. These findings suggest that WNK-SPAK-CCC signal pathway is important in regulating function of the nervous system, which may be through fine tuning of Cl- and cell volume homeostasis

  • The WNK-SPAK/OSR1 kinase complex and Cl- cotransporters play a crucial role in regulating cell volume in the nervous system (Fig. 2)

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Summary

ORE Open Research Exeter

TITLE The WNK-SPAK/OSR1 kinases and the cation-chloride cotransporters as therapeutic targets for neurological diseases AUTHORS Huang, H; Song, S; Banerjee, S; et al JOURNAL Aging and Disease DEPOSITED IN ORE 04 February 2019. COPYRIGHT AND REUSE Open Research Exeter makes this work available in accordance with publisher policies. A NOTE ON VERSIONS The version presented here may differ from the published version. You are advised to consult the published version for pagination, volume/issue and date of publication. Huachen Huang 1, 2, Shanshan Song, Suneel Banerjee, Tong Jiang, Jinwei Zhang, Kristopher T. [Received August 19, 2018; Revised September 27, 2018; Accepted September 28, 2018]

No phenotype
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Conclusions
Reduces Brain Damage and Accelerates Neurological
Findings
Function and Reduces Neuropathic Pain after Spinal
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