Fatty Acid Receptor Gpr40 Mediates Neuromicrovascular Degeneration Induced by Transarachidonic Acids in Rodents

Author:

Honoré Jean-Claude1,Kooli Amna1,Hamel David1,Alquier Thierry1,Rivera José-Carlos1,Quiniou Christiane1,Hou Xin1,Kermorvant-Duchemin Elsa1,Hardy Pierre1,Poitout Vincent1,Chemtob Sylvain1

Affiliation:

1. From the Department of Pediatrics, Research Center - CHU Ste-Justine, Montréal, Quebec, Canada (J.-C.H., A.K., D.H., J.-C.R., C.Q., X.H., E.K.-D., P.H., S.C.); Department of Pharmacology and Therapeutics, McGill University, Montréal, Quebec, Canada (A.K.); Department of Pharmacology, Université de Montréal, Quebec, Canada (J.-C.H., D.H., J.-C.R., S.C.); Montreal Diabetes Research Center - CRCHUM, Montréal, Quebec, Canada (T.A., V.P.); Department of Medicine, Université de Montréal, Quebec, Canada (T...

Abstract

Objective— Nitro-oxidative stress exerts a significant role in the genesis of hypoxic-ischemic (HI) brain injury. We previously reported that the ω-6 long chain fatty acids, transarachidonic acids (TAAs), which are nitrative stress-induced nonenzymatically generated arachidonic acid derivatives, trigger selective microvascular endothelial cell death in neonatal neural tissue. The primary molecular target of TAAs remains unidentified. GPR40 is a G protein–coupled receptor activated by long chain fatty acids, including ω-6; it is highly expressed in brain, but its functions in this tissue are largely unknown. We hypothesized that TAAs play a significant role in neonatal HI-induced cerebral microvascular degeneration through GPR40 activation. Approach and Results— Within 24 hours of a HI insult to postnatal day 7 rat pups, a cerebral infarct and a 40% decrease in cerebrovascular density was observed. These effects were associated with an increase in nitrative stress markers (3-nitrotyrosine immunoreactivity and TAA levels) and were reduced by treatment with nitric oxide synthase inhibitor. GPR40 was expressed in rat pup brain microvasculature. In vitro, in GPR40-expressing human embryonic kidney (HEK)-293 cells, [ 14 C]-14 E -AA (radiolabeled TAA) bound specifically, and TAA induced calcium transients, extracellular signal–regulated kinase 1/2 phosphorylation, and proapoptotic thrombospondin-1 expression. In vivo, intracerebroventricular injection of TAAs triggered thrombospondin-1 expression and cerebral microvascular degeneration in wild-type mice, but not in GPR40-null congeners. Additionally, HI-induced neurovascular degeneration and cerebral infarct were decreased in GPR40-null mice. Conclusions— GPR40 emerges as the first identified G protein–coupled receptor conveying actions of nonenzymatically generated nitro-oxidative products, specifically TAAs, and is involved in (neonatal) HI encephalopathy.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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