Molecular characterization of an arachidonic acid epoxygenase in rat brain astrocytes

被引:173
作者
Alkayed, NJ
Narayanan, J
Gebremedhin, D
Medhora, M
Roman, RJ
Harder, DR
机构
[1] MED COLL WISCONSIN, CARDIOVASC RES CTR, DEPT PHYSIOL, MILWAUKEE, WI 53226 USA
[2] CLEMENT J ZABLOCKI VET AFFAIRS MED CTR, MILWAUKEE, WI USA
关键词
astrocytes; microcirculation; potassium channels; rats;
D O I
10.1161/01.STR.27.5.971
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Background and Purpose Brain parenchymal tissue metabolizes arachidonic acid (AA) via the cytochrome P350 (P350) epoxygenase to epoxyeicosatrienoic acids (EETs). EETs dilate cerebral arterioles and enhance K+ current in vascular smooth muscle cells from large cerebral arteries. Because of the close association between astrocytes and the cerebral microcirculation, we hypothesized that brain epoxygenase activity originates from astrocytes. This study was designed to identify and localize an AA epoxygenase in rat brain astrocytes. We also tested the effect of EETs on whole-cell K+ current in rat cerebral microvascular smooth muscle cells. Methods A functional assay was used to demonstrate endogenous epoxygenase activity of intact astrocytes in culture. Oligonucleotide primers derived from the sequence of a known hepatic epoxygenase, P350 2C11, were used in reverse transcription/polymerase chain reaction of RNA isolated from cultured rat astrocytes. The appropriate size reverse transcription/polymerase chain reaction product was cloned into a plasmid vector and sequenced. A polyclonal peptide antibody was raised against P350 2C11 and used in Western blotting and immunocytochemical staining of cultured astrocytes. A voltage-clamp technique was used to test the effect of EETs on whole-cell K+ current recorded from rat cerebral microvascular muscle cells. Results Based on elution time of known standards and inhibition by miconazole, an inhibitor of P450 AA epoxygenase, cultured astrocytes produce 11,12- and 14,15-EETs when incubated with AA. The sequence of a cDNA derived from RNA isolated from cultured rat astrocytes was 100% identical to P450 2C11. Immunoreactivity to glial fibrillary acidic protein, a marker for astrocytes, colocalized with 2C11 immunoreactivity in double immunochemical staining of cultured astrocytes. EETs enhanced outward K+ current in muscle cells from rat brain microvessels. Conclusions Our results demonstrate that a P450 2C11 mRNA is expressed in astrocytes and may be responsible for astrocyte epoxygenase activity. Given the vasodilatory effect of EETs, our findings suggest a role for astrocytes in the control of cerebral microcirculation mediated by P450 2C11-catalyzed conversion of AA to EETs. The mechanism of EET-induced dilation of rat cerebral microvessels may involve activation of K+ channels.
引用
收藏
页码:971 / 979
页数:9
相关论文
共 29 条
[1]  
AMRUTHESH CS, 1995, J NEUROCHEM, V65, P338
[2]   BRAIN SYNTHESIS AND CEREBROVASCULAR ACTION OF EPOXYGENASE METABOLITES OF ARACHIDONIC-ACID [J].
AMRUTHESH, SC ;
FALCK, JR ;
ELLIS, EF .
JOURNAL OF NEUROCHEMISTRY, 1992, 58 (02) :503-510
[3]   METABOLISM OF ARACHIDONIC-ACID TO EPOXYEICOSATRIENOIC ACIDS, HYDROXYEICOSATETRAENOIC ACIDS, AND PROSTAGLANDINS IN CULTURED RAT HIPPOCAMPAL ASTROCYTES [J].
AMRUTHESH, SC ;
BOERSCHEL, MF ;
MCKINNEY, JS ;
WILLOUGHBY, KA ;
ELLIS, EF .
JOURNAL OF NEUROCHEMISTRY, 1993, 61 (01) :150-159
[4]  
BAZAN NG, 1993, PROG BRAIN RES, V96, P247
[5]  
CAPDEVILA J, 1983, ENDOCRINOLOGY, V113, P421
[6]   EPOXYGENATION OF ARACHIDONIC-ACID BY RAT ANTERIOR-PITUITARY MICROSOMAL FRACTIONS [J].
CAPDEVILA, J ;
SNIJDER, GD ;
FALCK, JR .
FEBS LETTERS, 1984, 178 (02) :319-322
[7]  
CAPDEVILA JH, 1990, J BIOL CHEM, V265, P10865
[8]  
DAIKH BE, 1994, J PHARMACOL EXP THER, V271, P1427
[9]   DILATION OF CEREBRAL ARTERIOLES BY CYTOCHROME-P-450 METABOLITES OF ARACHIDONIC-ACID [J].
ELLIS, EF ;
POLICE, RJ ;
YANCEY, L ;
MCKINNEY, JS ;
AMRUTHESH, SC .
AMERICAN JOURNAL OF PHYSIOLOGY, 1990, 259 (04) :H1171-H1177
[10]   REGIOSPECIFIC EXPRESSION OF CYTOCHROME-P-450S AND MICROSOMAL EPOXIDE HYDROLASE IN HUMAN BRAIN-TISSUE [J].
FARIN, FM ;
OMIECINSKI, CJ .
JOURNAL OF TOXICOLOGY AND ENVIRONMENTAL HEALTH, 1993, 40 (2-3) :317-335