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2.
J Mol Cell Cardiol ; 117: 88-99, 2018 04.
Article in English | MEDLINE | ID: mdl-29428638

ABSTRACT

Arterial stiffness plays a causal role in development of systolic hypertension. 20-hydroxyeicosatetraeonic acid (20-HETE), a cytochrome P450 (CYP450)-derived arachidonic acid metabolite, is known to be elevated in resistance arteries in hypertensive animal models and loosely associated with obesity in humans. However, the role of 20-HETE in the regulation of large artery remodeling in metabolic syndrome has not been investigated. We hypothesized that elevated 20-HETE in metabolic syndrome increases matrix metalloproteinase 12 (MMP12) activation leading to increased degradation of elastin, increased large artery stiffness and increased systolic blood pressure. 20-HETE production was increased ~7 fold in large, conduit arteries of metabolic syndrome (JCR:LA-cp, JCR) vs. normal Sprague-Dawley (SD) rats. This correlated with increased elastin degradation (~7 fold) and decreased arterial compliance (~75% JCR vs. SD). 20-HETE antagonists blocked elastin degradation in JCR rats concomitant with blocking MMP12 activation. 20-HETE antagonists normalized, and MMP12 inhibition (pharmacological and MMP12-shRNA-Lnv) significantly improved (~50% vs. untreated JCR) large artery compliance in JCR rats. 20-HETE antagonists also decreased systolic (182 ±â€¯3 mmHg JCR, 145 ±â€¯3 mmHg JCR + 20-HETE antagonists) but not diastolic blood pressure in JCR rats. Whereas diastolic pressure was fully angiotensin II (Ang II)-dependent, systolic pressure was only partially Ang II-dependent, and large artery stiffness was Ang II-independent. Thus, 20-HETE-dependent regulation of systolic blood pressure may be a unique feature of metabolic syndrome related to high 20-HETE production in large, conduit arteries, which results in increased large artery stiffness and systolic blood pressure. These findings may have implications for management of systolic hypertension in patients with metabolic syndrome.


Subject(s)
Blood Pressure , Hydroxyeicosatetraenoic Acids/metabolism , Hypertension/enzymology , Hypertension/physiopathology , Matrix Metalloproteinase 12/metabolism , Metabolic Syndrome/enzymology , Metabolic Syndrome/physiopathology , Vascular Stiffness , Animals , Collagen Type I/metabolism , Collagen Type III/metabolism , Compliance , Cytochrome P-450 CYP4A/metabolism , Cytochrome P450 Family 4/metabolism , Diastole/drug effects , Elastin/metabolism , Enzyme Activation/drug effects , Hypertension/complications , Losartan/pharmacology , Male , Metabolic Syndrome/complications , Proteolysis/drug effects , RNA, Small Interfering/metabolism , Rats, Sprague-Dawley , Vascular Stiffness/drug effects
3.
J Pharmacol Exp Ther ; 363(3): 412-418, 2017 12.
Article in English | MEDLINE | ID: mdl-28912346

ABSTRACT

20-Hydroxy-5,8,11,14-eicosatetraenoic acid (20-HETE) has been linked to pro-hypertensive and anti-hypertensive actions through its ability to promote vasoconstriction and inhibit Na transport in the ascending limb of the loop of Henle, respectively. In this study, we assessed the effects of 20-HETE blockade on blood pressure, renal hemodynamics, and urinary sodium excretion in Cyp4a14(-/-) male mice, which display androgen-driven 20-HETE-dependent hypertension. Administration of 2,5,8,11,14,17-hexaoxanonadecan-19-yl 20-hydroxyicosa-6(Z),15(Z)-dienoate (20-SOLA), a water-soluble 20-HETE antagonist, in the drinking water normalized the blood pressure of male Cyp4a14(-/-) hypertensive mice (±124 vs. ±153 mmHg) while having no effect on age-matched normotensive wild-type (WT) male mice. Hypertension in Cyp4a14(-/-) male mice was accompanied by decreased renal perfusion and reduced glomerular filtration rates, which were corrected by treatment with 20-SOLA. Interestingly, Cyp4a14(-/-) male mice treated with 20-SOLA displayed increased urinary sodium excretion that was paralleled by the reduction of blood pressure suggestive of an antinatriuretic activity of endogenous 20-HETE in the hypertensive mice. This interpretation is in line with the observation that the natriuretic response to acute isotonic saline loading in hypertensive Cyp4a14(-/-) male mice was significantly impaired relative to that in WT mice; this impairment was corrected by 20-SOLA treatment. Hence, endogenous 20-HETE appears to promote sodium conservation in hypertensive Cyp4a14(-/-) male mice, presumably, as a result of associated changes in renal hemodynamics and/or direct stimulatory action on tubular sodium reabsorption.


Subject(s)
Blood Pressure/drug effects , Cytochrome P450 Family 4/genetics , Hydroxyeicosatetraenoic Acids/antagonists & inhibitors , Natriuresis/drug effects , Animals , Antihypertensive Agents/pharmacology , Female , Glomerular Filtration Rate/genetics , Kidney Tubules/metabolism , Male , Mice , Mice, Knockout , Polyethylene Glycols , Renal Circulation/genetics , Siloxanes , Sodium/urine
4.
Circ Res ; 120(11): 1776-1788, 2017 May 26.
Article in English | MEDLINE | ID: mdl-28325781

ABSTRACT

RATIONALE: 20-Hydroxyeicosatetraenoic acid (20-HETE), one of the principle cytochrome P450 eicosanoids, is a potent vasoactive lipid whose vascular effects include stimulation of smooth muscle contractility, migration, and proliferation, as well as endothelial cell dysfunction and inflammation. Increased levels of 20-HETE in experimental animals and in humans are associated with hypertension, stroke, myocardial infarction, and vascular diseases. OBJECTIVE: To date, a receptor/binding site for 20-HETE has been implicated based on the use of specific agonists and antagonists. The present study was undertaken to identify a receptor to which 20-HETE binds and through which it activates a signaling cascade that culminates in many of the functional outcomes attributed to 20-HETE in vitro and in vivo. METHODS AND RESULTS: Using crosslinking analogs, click chemistry, binding assays, and functional assays, we identified G-protein receptor 75 (GPR75), currently an orphan G-protein-coupled receptor (GPCR), as a specific target of 20-HETE. In cultured human endothelial cells, 20-HETE binding to GPR75 stimulated Gαq/11 protein dissociation and increased inositol phosphate accumulation and GPCR-kinase interacting protein-1-GPR75 binding, which further facilitated the c-Src-mediated transactivation of epidermal growth factor receptor. This results in downstream signaling pathways that induce angiotensin-converting enzyme expression and endothelial dysfunction. Knockdown of GPR75 or GPCR-kinase interacting protein-1 prevented 20-HETE-mediated endothelial growth factor receptor phosphorylation and angiotensin-converting enzyme induction. In vascular smooth muscle cells, GPR75-20-HETE pairing is associated with Gαq/11- and GPCR-kinase interacting protein-1-mediated protein kinase C-stimulated phosphorylation of MaxiKß, linking GPR75 activation to 20-HETE-mediated vasoconstriction. GPR75 knockdown in a mouse model of 20-HETE-dependent hypertension prevented blood pressure elevation and 20-HETE-mediated increases in angiotensin-converting enzyme expression, endothelial dysfunction, smooth muscle contractility, and vascular remodeling. CONCLUSIONS: This is the first report to identify a GPCR target for an eicosanoid of this class. The discovery of 20-HETE-GPR75 pairing presented here provides the molecular basis for the signaling and pathophysiological functions mediated by 20-HETE in hypertension and cardiovascular diseases.


Subject(s)
Endothelium, Vascular/physiology , Hydroxyeicosatetraenoic Acids/metabolism , Hypertension/metabolism , Receptors, G-Protein-Coupled/metabolism , Signal Transduction/physiology , Vascular Remodeling/physiology , Animals , Cells, Cultured , Endothelium, Vascular/drug effects , Humans , Hydroxyeicosatetraenoic Acids/pharmacology , Hydroxyeicosatetraenoic Acids/toxicity , Hypertension/chemically induced , Male , Mice , Mice, Transgenic , Protein Binding/physiology , Rats , Signal Transduction/drug effects , Vascular Remodeling/drug effects
5.
Am J Physiol Heart Circ Physiol ; 312(4): H742-H751, 2017 Apr 01.
Article in English | MEDLINE | ID: mdl-28087518

ABSTRACT

Thirty percent of the world population is diagnosed with metabolic syndrome. High-fat/high-sucrose (HF/HS) diet (Western diet) correlates with metabolic syndrome prevalence. We characterized effects of the HF/HS diet on vascular (arterial stiffness, vasoreactivity, and coronary collateral development) and cardiac (echocardiography) function, oxidative stress, and inflammation in a rat model of metabolic syndrome (JCR rats). Furthermore, we determined whether male versus female animals were affected differentially by the Western diet. Cardiovascular function in JCR male rats was impaired versus normal Sprague-Dawley (SD) rats. HF/HS diet compromised cardiovascular (dys)function in JCR but not SD male rats. In contrast, cardiovascular function was minimally impaired in JCR female rats on normal chow. However, cardiovascular function in JCR female rats on the HF/HS diet deteriorated to levels comparable to JCR male rats on the HF/HS diet. Similarly, oxidative stress was markedly increased in male but not female JCR rats on normal chow but was equally exacerbated by the HF/HS diet in male and female JCR rats. These results indicate that the Western diet enhances oxidative stress and cardiovascular dysfunction in metabolic syndrome and eliminates the protective effect of female sex on cardiovascular function, implying that both males and females with metabolic syndrome are at equal risk for cardiovascular disease.NEW & NOTEWORTHY Western diet abolished protective effect of sex against cardiovascular disease (CVD) development in premenopausal animals with metabolic syndrome. Western diet accelerates progression of CVD in male and female animals with preexisting metabolic syndrome but not normal animals. Exacerbation of baseline oxidative stress correlates with accelerated progression of CVD in metabolic syndrome animals on Western diet.


Subject(s)
Diet, High-Fat/adverse effects , Dietary Sucrose/toxicity , Heart/physiopathology , Metabolic Syndrome/physiopathology , Animals , Cardiovascular Physiological Phenomena , Collateral Circulation , Coronary Circulation/drug effects , Echocardiography , Female , Heart/diagnostic imaging , Heart/drug effects , Inflammation/pathology , Male , Metabolic Syndrome/genetics , Oxidative Stress , Rats , Rats, Inbred Strains , Rats, Sprague-Dawley , Sex Characteristics , Vascular Stiffness/drug effects
6.
Am J Physiol Regul Integr Comp Physiol ; 309(1): R71-8, 2015 Jul 01.
Article in English | MEDLINE | ID: mdl-25924878

ABSTRACT

Increased vascular 20-HETE is associated with hypertension and activation of the renin-angiotensin system (RAS) through induction of vascular angiotensin-converting enzyme (ACE) expression. Cyp4a12tg mice, whose Cyp4a12-20-HETE synthase expression is under the control of a tetracycline (doxycycline, DOX) promoter, were used to assess the contribution of ACE/RAS to microvascular remodeling in 20-HETE-dependent hypertension. Treatment of Cyp4a12tg mice with DOX increased systolic blood pressure (SBP; 136 ± 2 vs. 102 ± 1 mmHg; P < 0.05), and this increase was prevented by administration of 20-HEDGE, lisinopril, or losartan. DOX-induced hypertension was associated with microvascular dysfunction and remodeling of preglomerular microvessels, which was prevented by 20-HEDGE, a 20-HETE antagonist, yet only lessened, but not prevented, by lisinopril or losartan. In ACE 3/3 mice, which lack vascular endothelial ACE, administration of 5α-dihydrotestosterone (DHT), a known inducer of 20-HETE production, increased SBP; however, the increase was about 50% of that in wild-type (WT) mice (151 ± 1 vs. 126 ± 1 mmHg). Losartan and 20-HEDGE prevented the DHT-induced increase in SBP in WT and ACE 3/3 mice. DHT treatment increased 20-HETE production and microvascular remodeling in WT and ACE 3/3 mice; however, remodeling was attenuated in the ACE 3/3 mice as opposed to WT mice (15.83 ± 1.11 vs. 22.17 ± 0.92 µm; P < 0.05). 20-HEDGE prevented microvascular remodeling in WT and ACE 3/3 mice, while losartan had no effect on microvascular remodeling in ACE 3/3. Taken together, these results suggest that RAS contributes to 20-HETE-mediated microvascular remodeling in hypertension and that 20-HETE-driven microvascular remodeling independent of blood pressure elevation does not fully rely on ACE activity in the vascular endothelium.


Subject(s)
Angiotensin II Type 1 Receptor Blockers/pharmacology , Antihypertensive Agents/pharmacology , Endothelium, Vascular/drug effects , Hydroxyeicosatetraenoic Acids/metabolism , Hypertension/drug therapy , Microvessels/drug effects , Peptidyl-Dipeptidase A/deficiency , Vascular Remodeling/drug effects , Angiotensin II/metabolism , Angiotensin-Converting Enzyme Inhibitors/pharmacology , Animals , Cytochrome P-450 Enzyme System/genetics , Cytochrome P-450 Enzyme System/metabolism , Dihydrotestosterone , Disease Models, Animal , Endothelial Cells/drug effects , Endothelial Cells/enzymology , Endothelium, Vascular/enzymology , Endothelium, Vascular/physiopathology , Female , Hypertension/chemically induced , Hypertension/enzymology , Hypertension/genetics , Hypertension/physiopathology , Male , Mice, Transgenic , Microvessels/enzymology , Microvessels/physiopathology , Peptidyl-Dipeptidase A/genetics , Renin-Angiotensin System/drug effects , Time Factors
7.
Hypertension ; 57(4): 788-94, 2011 Apr.
Article in English | MEDLINE | ID: mdl-21321301

ABSTRACT

Increased vascular synthesis of 20-hydroxy-5,8,11,14-eicosatetraenoic acid (20-HETE) is associated with increased vascular contraction, endothelial dysfunction, and endothelial activation; all are believed to account for 20-HETE prohypertensive properties. We demonstrated previously that the 20-HETE-dependent inhibition of NO production is mediated through inhibitor of κB kinase (IKK), suggesting a cross-talk between 20-HETE-mediated endothelial dysfunction and activation. In this study, we examined the temporal relationship among blood pressure, endothelial dysfunction, and endothelial activation and the role of IKK in the rat model of androgen-driven 20-HETE-mediated hypertension. In Sprague-Dawley rats treated with 5α-dihydrotestosterone, renal vascular 20-HETE levels increased by day 2 of treatment from 17.7±2.4 to 57.7±9.7 ng/mg, whereas blood pressure elevation reached significance by day 3 (132.7±1.7 versus 117.2±0.8 mm Hg). In renal interlobar arteries, when compared with vehicle, 5α-dihydrotestosterone treatment increased the sensitivity to phenylephrine-induced vasoconstriction by 3.5-fold, decreased acetylcholine-induced vasorelaxation, and increased nuclear factor κB activity, all of which were attenuated by treatment with the 20-HETE antagonist, 20 hydroxyeicosa-6(Z),15(Z)-dienoic acid, (20-6,15-HEDE). Cotreatment with parthenolide, an IKK inhibitor, attenuated the androgen-dependent 20-HETE-mediated elevation in blood pressure (from 133.7±3.1 to 109.8±3.0 mm Hg). In addition, parthenolide treatment negated 20-HETE-mediated inhibition of the relaxing response to acetylcholine and 20-HETE-mediated increase in vascular nuclear factor κB activity. These findings suggest that inhibition of IKK attenuates the androgen-dependent 20-HETE-mediated increase in blood pressure by inhibiting both 20-HETE-dependent endothelial activation and dysfunction.


Subject(s)
Androgens/pharmacology , Dihydrotestosterone/pharmacology , Endothelium, Vascular/physiopathology , Hydroxyeicosatetraenoic Acids/metabolism , Hypertension/chemically induced , Hypertension/physiopathology , I-kappa B Kinase/metabolism , Androgens/metabolism , Animals , Blood Pressure/drug effects , Blood Pressure/physiology , Dihydrotestosterone/metabolism , Endothelium, Vascular/drug effects , Hypertension/metabolism , I-kappa B Kinase/antagonists & inhibitors , Rats , Rats, Sprague-Dawley , Renal Artery/drug effects , Renal Artery/physiopathology , Sesquiterpenes/pharmacology , Vasoconstriction/drug effects
8.
Circulation ; 111(23): 3126-34, 2005 Jun 14.
Article in English | MEDLINE | ID: mdl-15939814

ABSTRACT

BACKGROUND: Apolipoprotein A1 mimetic peptide, synthesized from D-amino acid (D-4F), enhances the ability of HDL to protect LDL against oxidation in atherosclerotic animals. METHODS AND RESULTS: We investigated the mechanisms by which D-4F provides antioxidant effects in a diabetic model. Sprague-Dawley rats developed diabetes with administration of streptozotocin (STZ). We examined the effects of daily D-4F (100 microg/100 g of body weight, intraperitoneal injection) on superoxide (O2-), extracellular superoxide dismutase (EC-SOD), vascular heme oxygenase (HO-1 and HO-2) levels, and circulating endothelial cells in diabetic rats. In response to D-4F, both the quantity and activity of HO-1 were increased. O2- levels were elevated in diabetic rats (74.8+/-8x10(3) cpm/10 mg protein) compared with controls (38.1+/-8x10(3) cpm/10 mg protein; P<0.01). D-4F decreased O2- levels to 13.23+/-1x10(3) (P<0.05 compared with untreated diabetics). The average number of circulating endothelial cells was higher in diabetics (50+/-6 cells/mL) than in controls (5+/-1 cells/mL) and was significantly decreased in diabetics treated with D-4F (20+/-3 cells/mL; P<0.005). D-4F also decreased endothelial cell fragmentation in diabetic rats. The impaired relaxation typical of blood vessels in diabetic rats was prevented by administration of D-4F (85.0+/-2.0% relaxation). Western blot analysis showed decreased EC-SOD in the diabetic rats, whereas D-4F restored the EC-SOD level. CONCLUSIONS: We conclude that an increase in circulating endothelial cell sloughing, superoxide anion, and vasoconstriction in diabetic rats can be prevented by administration of D-4F, which is associated with an increase in 2 antioxidant proteins, HO-1 and EC-SOD.


Subject(s)
Diabetes Mellitus, Experimental/drug therapy , Endothelial Cells/drug effects , Heme Oxygenase-1/analysis , Peptides/pharmacology , Superoxide Dismutase/analysis , Animals , Antioxidants/administration & dosage , Antioxidants/pharmacology , Aorta/drug effects , Aorta/enzymology , Aorta/pathology , Aorta/physiopathology , Apolipoprotein A-I , Diabetes Mellitus, Experimental/pathology , Endothelial Cells/cytology , Male , Oxidative Stress/drug effects , Peptides/administration & dosage , Rats , Rats, Sprague-Dawley , Streptozocin , Superoxides/metabolism , Up-Regulation/drug effects , Vasoconstriction/drug effects
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