학술논문

Vasopressin V1a receptor is required for nucleocytoplasmic transport of mineralocorticoid receptor
Document Type
Author abstract
Report
Source
American Journal of Physiology (Consolidated). Oct 2012, Vol. 303 Issue 4, pF1080, 9 p.
Subject
United States
Language
English
ISSN
0002-9513
Abstract
We previously reported that a deficiency in the vasopressin Via receptor (VlaR) results in type 4 renal tubular acidosis, which suggests that vasopressin exerts direct effects on the physiological actions of aldosterone. We investigated the role of vasopressin for nucleocytoplasmic transport of mineralocorticoid receptor (MR) in the intercalated cells. Vasopressin VlaR-deficient ([VlaR.sup.-/-]) mice showed largely decreased expression of MR and 11[beta]-hydroxysteroid dehydrogenase type 2 (11[beta]HSD2) in the medulla of the kidney, which was partially ameliorated by fludrocortisone treatment. The incubation of IN-IC cells, an intercalated cell line established from temperature-sensitive SV40 large T antigen-expressing rats, with aldosterone or vasopressin increased the nuclear-to-cytoplasmic ratio of the MR from 11.2 to 47.2% and from 18.7 to 61.2%, respectively, in 30 min without any changes in MR expression from the whole cell extract. The immunohistochemistry analysis of the IN-IC cells revealed the nuclear accumulation of MRs after a 30-min incubation with aldosterone or vasopressin. These effects were accompanied by an increase in regulator of chromosome condensation-1 (RCC-1) due to aldosterone and a decrease in Ran GTPase-activating protein 1 (Ran Gapl) due to vasopressin. RNA interference against VlaR abolished the nuclear accumulation of MR induced by aldosterone or vasopressin. Vasopressin increased PKC[alpha] and -[[beta].sub.1] expression, and aldosterone increased PKC[delta] and -[zeta] expression, but these effects were abolished with a V1aR knockdown. These results suggest that vasopressin directly regulates the nucleocytoplasmic transport of MRs via the VlaR in the intercalated cells of the collecting ducts. renin-angiotensin-aldosterone system; mineralocorticoid receptor; vasopressin V1a receptor; nucleocytoplasmic transport; Ran cycle doi: 10.1152/ajprenal.00052.2012.

Online Access