Soluble epoxide hydrolase regulates hydrolysis of vasoactive epoxyeicosatrienoic acids. 2000

Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
Department of Biopharmaceutical Sciences, School of Pharmacy, University of California, San Francisco, CA, USA.

The cytochrome P450-derived epoxyeicosatrienoic acids (EETs) have potent effects on renal vascular reactivity and tubular sodium and water transport; however, the role of these eicosanoids in the pathogenesis of hypertension is controversial. The current study examined the hydrolysis of the EETs to the corresponding dihydroxyeicosatrienoic acids (DHETs) as a mechanism for regulation of EET activity and blood pressure. EET hydrolysis was increased 5- to 54-fold in renal cortical S9 fractions from the spontaneously hypertensive rat (SHR) relative to the normotensive Wistar-Kyoto (WKY) rat. This increase was most significant for the 14,15-EET regioisomer, and there was a clear preference for hydrolysis of 14, 15-EET over the 8,9- and 11,12-EETs. Increased EET hydrolysis was consistent with increased expression of soluble epoxide hydrolase (sEH) in the SHR renal microsomes and cytosol relative to the WKY samples. The urinary excretion of 14,15-DHET was 2.6-fold higher in the SHR than in the WKY rat, confirming increased EET hydrolysis in the SHR in vivo. Blood pressure was decreased 22+/-4 mm Hg (P:<0.01) 6 hours after treatment of SHRs with the selective sEH inhibitor N:, N:'-dicyclohexylurea; this treatment had no effect on blood pressure in the WKY rat. These studies identify sEH as a novel therapeutic target for control of blood pressure. The identification of a potent and selective inhibitor of EET hydrolysis will be invaluable in separating the vascular effects of the EET and DHET eicosanoids.

UI MeSH Term Description Entries
D006973 Hypertension Persistently high systemic arterial BLOOD PRESSURE. Based on multiple readings (BLOOD PRESSURE DETERMINATION), hypertension is currently defined as when SYSTOLIC PRESSURE is consistently greater than 140 mm Hg or when DIASTOLIC PRESSURE is consistently 90 mm Hg or more. Blood Pressure, High,Blood Pressures, High,High Blood Pressure,High Blood Pressures
D007672 Kidney Cortex The outer zone of the KIDNEY, beneath the capsule, consisting of KIDNEY GLOMERULUS; KIDNEY TUBULES, DISTAL; and KIDNEY TUBULES, PROXIMAL. Cortex, Kidney
D008297 Male Males
D008861 Microsomes Artifactual vesicles formed from the endoplasmic reticulum when cells are disrupted. They are isolated by differential centrifugation and are composed of three structural features: rough vesicles, smooth vesicles, and ribosomes. Numerous enzyme activities are associated with the microsomal fraction. (Glick, Glossary of Biochemistry and Molecular Biology, 1990; from Rieger et al., Glossary of Genetics: Classical and Molecular, 5th ed) Microsome
D008862 Microsomes, Liver Closed vesicles of fragmented endoplasmic reticulum created when liver cells or tissue are disrupted by homogenization. They may be smooth or rough. Liver Microsomes,Liver Microsome,Microsome, Liver
D011918 Rats, Inbred SHR A strain of Rattus norvegicus with elevated blood pressure used as a model for studying hypertension and stroke. Rats, Spontaneously Hypertensive,Rats, SHR,Inbred SHR Rat,Inbred SHR Rats,Rat, Inbred SHR,Rat, SHR,Rat, Spontaneously Hypertensive,SHR Rat,SHR Rat, Inbred,SHR Rats,SHR Rats, Inbred,Spontaneously Hypertensive Rat,Spontaneously Hypertensive Rats
D011921 Rats, Inbred WKY A strain of Rattus norvegicus used as a normotensive control for the spontaneous hypertensive rats (SHR). Rats, Wistar Kyoto,Wistar Kyoto Rat,Rats, WKY,Inbred WKY Rat,Inbred WKY Rats,Kyoto Rat, Wistar,Rat, Inbred WKY,Rat, WKY,Rat, Wistar Kyoto,WKY Rat,WKY Rat, Inbred,WKY Rats,WKY Rats, Inbred,Wistar Kyoto Rats
D001794 Blood Pressure PRESSURE of the BLOOD on the ARTERIES and other BLOOD VESSELS. Systolic Pressure,Diastolic Pressure,Pulse Pressure,Pressure, Blood,Pressure, Diastolic,Pressure, Pulse,Pressure, Systolic,Pressures, Systolic
D003600 Cytosol Intracellular fluid from the cytoplasm after removal of ORGANELLES and other insoluble cytoplasmic components. Cytosols
D004791 Enzyme Inhibitors Compounds or agents that combine with an enzyme in such a manner as to prevent the normal substrate-enzyme combination and the catalytic reaction. Enzyme Inhibitor,Inhibitor, Enzyme,Inhibitors, Enzyme

Related Publications

Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
December 2008, Proceedings of the National Academy of Sciences of the United States of America,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
January 2007, Prostaglandins & other lipid mediators,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
October 2003, Biochemistry,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
July 2016, Journal of hypertension,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
October 2014, American journal of respiratory and critical care medicine,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
May 2013, Chinese journal of natural medicines,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
January 2024, Frontiers in pharmacology,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
January 2022, The Chinese journal of physiology,
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
November 2016, Advances in nutrition (Bethesda, Md.),
Z Yu, and F Xu, and L M Huse, and C Morisseau, and A J Draper, and J W Newman, and C Parker, and L Graham, and M M Engler, and B D Hammock, and D C Zeldin, and D L Kroetz
July 2010, American journal of translational research,
Copied contents to your clipboard!