Vasopressin lowers renal epoxyeicosatrienoic acid levels by activating soluble epoxide hydrolase

Author:

Boldt Christin1,Röschel Tom1,Himmerkus Nina2,Plain Allein2,Bleich Markus2,Labes Robert1,Blum Maximilian3,Krause Hans4,Magheli Ahmed4,Giesecke Torsten1,Mutig Kerim1,Rothe Michael5,Weldon Steven M.6,Dragun Duska78,Schunck Wolf-Hagen3,Bachmann Sebastian1,Paliege Alexander78

Affiliation:

1. Department of Anatomy, Charité-Universitätsmedizin Berlin, Berlin, Germany;

2. Department of Physiology, Christian-Albrechts-University, Kiel, Germany;

3. Max Delbrueck Center for Molecular Medicine, Berlin, Germany;

4. Department of Urology, Charité-Universitätsmedizin Berlin, Berlin, Germany;

5. Lipidomix, Berlin, Germany;

6. Boehringer Ingelheim Pharmaceuticals, Ridgefield, Connecticut;

7. Department of Nephrology, Charité-Universitätsmedizin Berlin, Berlin, Germany; and

8. Berlin Institute of Health, Berlin, Germany

Abstract

Activation of the thick ascending limb (TAL) Na+-K+-2Cl cotransporter (NKCC2) by the antidiuretic hormone arginine vasopressin (AVP) is an essential mechanism of renal urine concentration and contributes to extracellular fluid and electrolyte homeostasis. AVP effects in the kidney are modulated by locally and/or by systemically produced epoxyeicosatrienoic acid derivates (EET). The relation between AVP and EET metabolism has not been determined. Here, we show that chronic treatment of AVP-deficient Brattleboro rats with the AVP V2 receptor analog desmopressin (dDAVP; 5 ng/h, 3 days) significantly lowered renal EET levels (−56 ± 3% for 5,6-EET, −50 ± 3.4% for 11,12-EET, and −60 ± 3.7% for 14,15-EET). The abundance of the principal EET-degrading enzyme soluble epoxide hydrolase (sEH) was increased at the mRNA (+160 ± 37%) and protein levels (+120 ± 26%). Immunohistochemistry revealed dDAVP-mediated induction of sEH in connecting tubules and cortical and medullary collecting ducts, suggesting a role of these segments in the regulation of local interstitial EET signals. Incubation of murine kidney cell suspensions with 1 μM 14,15-EET for 30 min reduced phosphorylation of NKCC2 at the AVP-sensitive threonine residues T96 and T101 (−66 ± 5%; P < 0.05), while 14,15-DHET had no effect. Concomitantly, isolated perfused cortical thick ascending limb pretreated with 14,15-EET showed a 30% lower transport current under high and a 70% lower transport current under low symmetric chloride concentrations. In summary, we have shown that activation of AVP signaling stimulates renal sEH biosynthesis and enzyme activity. The resulting reduction of EET tissue levels may be instrumental for increased NKCC2 transport activity during AVP-induced antidiuresis.

Funder

Deutsche Forschungsgemeinschaft (DFG)

Publisher

American Physiological Society

Subject

Physiology

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