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PMID: 11416031 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

High salt intake increases uroguanylin expression in mouse kidney.

Endocrinology ·Vol. 142 ·No. 7 ·2001-07-00 ·Pages 3087-97

Potthast R, Ehler E, Scheving LA, Sindic A, Schlatter E, Kuhn M

Abstract

The intestinal peptides, guanylin and uroguanylin, may have an important role in the endocrine control of renal function. Both peptides and their receptor, guanylyl cyclase C (GC-C), are also expressed within the kidney, suggesting that they may act locally in an autocrine/paracrine fashion. However, their physiological regulation within the kidney has not been studied. To begin to address this issue, we evaluated the distribution of uroguanylin and guanylin messenger RNA (mRNA) in the mouse nephron and the regulation of renal expression by changes in dietary salt/water intake. Expression was determined in 1) wild-type mice, 2) two strains of receptor-guanylyl cyclase-deficient mice (ANP-receptor-deficient, GC-A-/-, and GC-C-deficient mice); and 3) cultured renal epithelial (M-1) cells, by RT-PCR, Northern blotting and immunocytochemistry. Renal uroguanylin messenger RNA expression was higher than guanylin and had a different distribution pattern, with highest levels in the proximal tubules, whereas guanylin was mainly expressed in the collecting ducts. Uroguanylin expression was significantly lower in GC-C-/- mice than in GC-A-/- and wild-types, suggesting that absence of a receptor was able to down-regulate ligand expression. Salt-loading (1% NaCl in drinking water) increased uroguanylin-mRNA expression by >1.8-fold but had no effect on guanylin expression. Uroguanylin but not guanylin transcripts were detected in M-1 cells and increased in response to hypertonic media (+NaCl or mannitol). Our results indicate that high-salt intake increases uroguanylin but not guanylin expression in the mouse kidney. The synthesis of these peptides by tubular epithelium may contribute to the local control of renal function and its adaptation to dietary salt.

MeSH Terms
Animals Blood Pressure/drug effects Cyclic GMP/metabolism Dose-Response Relationship, Drug Drinking/physiology Gastrointestinal Hormones Guanylate Cyclase/genetics,metabolism Immunohistochemistry Isoenzymes/genetics,metabolism Kidney/metabolism Male Mice Mice, Knockout/genetics Natriuretic Peptides Nephrons/metabolism Peptides/genetics,metabolism RNA, Messenger/metabolism Rats Receptors, Atrial Natriuretic Factor/genetics Reference Values Reverse Transcriptase Polymerase Chain Reaction Sodium Chloride/pharmacology Sodium, Dietary/administration & dosage,pharmacology Tissue Distribution
Chemicals
Gastrointestinal Hormones Isoenzymes Natriuretic Peptides Peptides RNA, Messenger Sodium, Dietary guanylin uroguanylin Sodium Chloride Guanylate Cyclase Receptors, Atrial Natriuretic Factor Cyclic GMP
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Potthast R
Institute of Pharmacology and Toxicology and Department of Internal Medicine, Experimental Nephrology, Westfaelische Wilhelms-Universitaet Muenster, Muenster 48129, Germany.
Ehler E
Scheving L A
Sindic A
Schlatter E
Kuhn M
Article Info
Journal
Endocrinology
Abbr.
Endocrinology
ISSN
0013-7227
Published
2001-07-00
Pages
3087-97
Language
English
Region
United States
NLM ID
0375040
Subset
IM
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