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Citations to this article

An epoxygenase metabolite of arachidonic acid mediates angiotensin II-induced rises in cytosolic calcium in rabbit proximal tubule epithelial cells.
Z T Madhun, … , U Hopfer, J G Douglas
Z T Madhun, … , U Hopfer, J G Douglas
Published August 1, 1991
Citation Information: J Clin Invest. 1991;88(2):456-461. https://doi.org/10.1172/JCI115325.
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Research Article Article has an altmetric score of 3

An epoxygenase metabolite of arachidonic acid mediates angiotensin II-induced rises in cytosolic calcium in rabbit proximal tubule epithelial cells.

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Abstract

Previous studies from this and other laboratories have shown that angiotensin II (AII) induces [Ca2+]i transients in proximal tubular epithelium independent of phospholipase C. AII also stimulates formation of 5,6-epoxyeicosatrienoic acid (5,6-EET) from arachidonic acid by a cytochrome P450 epoxygenase and decreases Na+ transport in the same concentration range. Because 5,6-EET mimics AII with regard to Na+ transport, it effects on calcium mobilization were evaluated. [Ca2+]i was measured by video microscopy with the fluorescent indicator fura-2 employing cultured rabbit proximal tubule. AII-induced [Ca2+]i transients were enhanced by arachidonic acid and attenuated by ketoconazole, an inhibitor of cytochrome P450 epoxygenases. Arachidonic acid also elicited a [Ca2+]i transient that was attenuated by ketoconazole. 5,6-EET augmented [Ca2+]i similar to that seen with AII, but was unaffected by ketoconazole. By contrast, the other regioisomers (8,9-, 11,12-, and 14,15-EET) were much less potent. [Ca2+]i transients resulted from influx through verapamil- and nifedipine-sensitive channels. These results suggest a novel mechanism for AII-induced Ca mobilization in proximal tubule involving cytochrome P450-dependent arachidonic acid metabolism and Ca influx through voltage-sensitive channels.

Authors

Z T Madhun, D A Goldthwait, D McKay, U Hopfer, J G Douglas

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Citations to this article in year 2013 (8)

Title and authors Publication Year
Comprehensive Physiology
BJ Wilkins, M Pack
Comprehensive Physiology 2013
Comprehensive Physiology
BJ Wilkins, M Pack
Comprehensive Physiology 2013
Comprehensive Physiology
BJ Wilkins, M Pack
Comprehensive Physiology 2013
Proximal nephron
JL Zhuo, XC Li
Comprehensive Physiology 2013
Antihypertensive and renoprotective actions of soluble epoxide hydrolase inhibition in ANG II-dependent malignant hypertension are abolished by pretreatment with L-NAME:
Z Honetschlägerová, K Kitada, Z Husková, A Sporková, L Kopkan, M Bürgelová, Š Varcabová, A Nishiyama, SH Hwang, BD Hammock, JD Imig, HJ Kramer, P Kujal, Z Vernerová, L Červenka
Journal of Hypertension 2013
Antihypertensive action of soluble epoxide hydrolase inhibition in Ren-2 transgenic rats is mediated by suppression of the intrarenal renin-angiotensin system
S Varcabova, Z Huskova, HJ Kramer, SH Hwang, BD Hammock, JD Imig, K Kitada, L Cervenka
Clinical and Experimental Pharmacology and Physiology 2013
Seldin and Giebisch's The Kidney
CJ Cooper, LD Dworkin, WL Henrich
Seldin and Giebisch's The Kidney 2013
Cytochrome P450 2J2: distribution, function, regulation, genetic polymorphisms and clinical significance
M Xu, W Ju, H Hao, G Wang, P Li
Drug Metabolism Reviews 2013

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