GPR68 Is a Neuroprotective Proton Receptor in Brain Ischemia

Author:

Wang Tao1,Zhou Guokun12,He Mindi1,Xu Yuanyuan1,Rusyniak W.G.3,Xu Yan4ORCID,Ji Yonghua2,Simon Roger P.5,Xiong Zhi-Gang5,Zha Xiang-ming1ORCID

Affiliation:

1. Department of Physiology and Cell Biology (T.W., G.Z., M.H., Yuanyuan Xu, X.-m.Z.), University of South Alabama College of Medicine, Mobile.

2. Laboratory of Neuropharmacology and Neurotoxicology, Shanghai University, China (G.Z., Y.J.).

3. Department of Neurosurgery (W.G.R.), University of South Alabama College of Medicine, Mobile.

4. Department of Obstetrics and Gynecology, Indiana University School of Medicine, Indianapolis (Yan Xu).

5. Department of Neurobiology, Morehouse School of Medicine, Atlanta, GA (R.P.S., Z.-G.X.).

Abstract

Background and Purpose: Brain acidosis is prevalent in stroke and other neurological diseases. Acidosis can have paradoxical injurious and protective effects. The purpose of this study is to determine whether a proton receptor exists in neurons to counteract acidosis-induced injury. Methods: We analyzed the expression of proton-sensitive GPCRs (G protein-coupled receptors) in the brain, examined acidosis-induced signaling in vitro, and studied neuronal injury using in vitro and in vivo mouse models. Results: GPR68, a proton-sensitive GPCR, was present in both mouse and human brain, and elicited neuroprotection in acidotic and ischemic conditions. GPR68 exhibited wide expression in brain neurons and mediated acidosis-induced PKC (protein kinase C) activation. PKC inhibition exacerbated pH 6-induced neuronal injury in a GPR68-dependent manner. Consistent with its neuroprotective function, GPR68 overexpression alleviated middle cerebral artery occlusion–induced brain injury. Conclusions: These data expand our knowledge on neuronal acid signaling to include a neuroprotective metabotropic dimension and offer GPR68 as a novel therapeutic target to alleviate neuronal injuries in ischemia and multiple other neurological diseases.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Advanced and Specialized Nursing,Cardiology and Cardiovascular Medicine,Neurology (clinical)

Reference44 articles.

1. Acidosis-related brain damage.;Siesjö BK;Prog Brain Res,1993

2. Two aspects of ASIC function: synaptic plasticity and neuronal injury.;Huang Y;Neuropharmacology,2015

3. Mild acidosis protects hippocampal neurons from injury induced by oxygen and glucose deprivation

4. Brain acidosis induced by hypercarbic ventilation attenuates focal ischemic injury.;Simon RP;J Pharmacol Exp Ther,1993

5. Neuroprotection in Ischemia

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