Sympathetic Regulation of the NCC (Sodium Chloride Cotransporter) in Dahl Salt–Sensitive Hypertension

Author:

Puleo Franco1,Kim Kiyoung1ORCID,Frame Alissa A.1,Walsh Kathryn R.1,Ferdaus Mohammed Z.1ORCID,Moreira Jesse D.2ORCID,Comsti Erica2,Faudoa Elizabeth3,Nist Kayla M.4ORCID,Abkin Eric2,Wainford Richard D.12ORCID

Affiliation:

1. From the Department of Pharmacology & Experimental Therapeutics and the Whitaker Cardiovascular Institute (F.P., K.K., A.A.F., K.R.W., M.Z.F., R.D.W.), Boston University School of Medicine, MA

2. Department of Health Sciences, Sargent College (J.D.M., E.C., E.A., R.D.W.), Boston University, Boston, Massachusetts.

3. College of Arts and Sciences (E.F.), Boston University, Boston, Massachusetts.

4. Department of Anatomy & Neurobiology (K.M.N.), Boston University School of Medicine, MA

Abstract

Increased sympathoexcitation and renal sodium retention during high salt intake are hallmarks of the salt sensitivity of blood pressure. The mechanism(s) by which excessive sympathetic nervous system release of norepinephrine influences renal sodium reabsorption is unclear. However, studies demonstrate that norepinephrine can stimulate the activity of the NCC (sodium chloride cotransporter) and promote the development of SSH (salt-sensitive hypertension). The adrenergic signaling pathways governing NCC activity remain a significant source of controversy with opposing studies suggesting a central role of upstream α 1 - and β-adrenoceptors in the canonical regulatory pathway involving WNKs (with-no-lysine kinases), SPAK (STE20/SPS1-related proline alanine-rich kinase), and OxSR1 (oxidative stress response 1). In our previous study, α 1 -adrenoceptor antagonism in norepinephrine-infused male Sprague-Dawley rats prevented the development of norepinephrine-evoked SSH in part by suppressing NCC activity and expression. In these studies, we used selective adrenoceptor antagonism in male Dahl salt–sensitive rats to test the hypothesis that norepinephrine-mediated activation of the NCC in Dahl SSH occurs via an α 1 -adrenoceptor dependent pathway. A high-salt diet evoked significant increases in NCC activity, expression, and phosphorylation in Dahl salt–sensitive rats that developed SSH. Increases were associated with a dysfunctional WNK1/4 dynamic and a failure to suppress SPAK/OxSR1 activity. α 1 -adrenoceptor antagonism initiated before high-salt intake or following the establishment of SSH attenuated blood pressure in part by suppressing NCC activity, expression, and phosphorylation. Collectively, our findings support the existence of a norepinephrine-activated α 1 -adrenoceptor gated pathway that relies on WNK/SPAK/OxSR1 signaling to regulate NCC activity in SSH.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Internal Medicine

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