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The Cyp2c44 epoxygenase regulates epithelial sodium channel activity and the blood pressure responses to increased dietary salt.

J Biol Chem. 2014; 
Capdevila JH, Pidkovka N, Mei S, Gong Y, Falck JR, Imig JD, Harris RC, Wang W.
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Peptide Synthesis Western blot analyses of kidney homogenates or membranes were performed by standard electrophoretic/blot- ting techniques using the following rabbit peptide antibodies: anti-Cyp2c44 from GenScript; anti-phospho-ERK1/2 (Tyr- 202/204), anti-phosphothreonine from Cell Signaling Technol- ogies; anti-ERK1/2 and anti-ENaC␥ from Santa Cruz Biotech- nology; and anti-␤-actin from Sigma. Get A Quote

摘要

Hypertension is a major risk factor for cerebral, cardiovascular, and renal disease, and its prevalence and devastating consequences raises a need for new strategies for its early diagnosis and treatment. We show here that lack of a Cyp2c44 epoxygenase causes dietary salt-sensitive hypertension, a common form of the human disease. Cyp2c44(-/-) mice on normal salt diets are normotensive but become hypertensive when fed high salt. Hypertensive Cyp2c44(-/-) mice show a hyperactive kidney epithelial sodium channel (ENaC) and reductions in ERK1/2 and ENaC subunit phosphorylation. The demonstration that amiloride, an ENaC inhibitor, lowers the blood pressure of hypertensive Cyp2c44(-/-) mice identifies a role for the... More

关键词

EETs; ENaC; ERK; Epoxygenase Pathway; Hypertension; Natriuresis; Sodium Transport