Literature DB >> 24173102

Direct control of Na(+)-K(+)-2Cl(-)-cotransport protein (NKCC1) expression with aldosterone.

Bo Ding1, Robert D Frisina, Xiaoxia Zhu, Yoshihisa Sakai, Bernd Sokolowski, Joseph P Walton.   

Abstract

Sodium/potassium/chloride cotransporter (NKCC1) proteins play important roles in Na(+) and K(+) concentrations in key physiological systems, including cardiac, vascular, renal, nervous, and sensory systems. NKCC1 levels and functionality are altered in certain disease states, and tend to decline with age. A sensitive, effective way of regulating NKCC1 protein expression has significant biotherapeutic possibilities. The purpose of the present investigation was to determine if the naturally occurring hormone aldosterone (ALD) could regulate NKCC1 protein expression. Application of ALD to a human cell line (HT-29) revealed that ALD can regulate NKCC1 protein expression, quite sensitively and rapidly, independent of mRNA expression changes. Utilization of a specific inhibitor of mineralocorticoid receptors, eplerenone, implicated these receptors as part of the ALD mechanism of action. Further experiments with cycloheximide (protein synthesis inhibitor) and MG132 (proteasome inhibitor) revealed that ALD can upregulate NKCC1 by increasing protein stability, i.e., reducing ubiquitination of NKCC1. Having a procedure for controlling NKCC1 protein expression opens the doors for therapeutic interventions for diseases involving the mis-regulation or depletion of NKCC1 proteins, for example during aging.

Entities:  

Keywords:  NKCC1; Na+-K+-2Cl--cotransport protein; aging; pathway regulation; physiological systems; steroid hormone; therapeutics

Mesh:

Substances:

Year:  2013        PMID: 24173102      PMCID: PMC3919974          DOI: 10.1152/ajpcell.00096.2013

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  58 in total

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Authors:  Laura Smith; Paul Litman; Carole M Liedtke
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Review 6.  Mechanisms of mineralocorticoid action.

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Review 8.  Roles of Key Ion Channels and Transport Proteins in Age-Related Hearing Loss.

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