microRNA-367-3p regulation of GPRC5A is suppressed in ischemic stroke

神经炎症 缺血 小RNA 冲程(发动机) 医学 脑缺血 基因表达 内科学 缺血性中风 病理 麻醉 药理学 心脏病学 生物 炎症 基因 生物化学 机械工程 工程类
作者
Fatiha Tabet,Seyoung Lee,Wanying Zhu,Michael G. Levin,Cynthia L. Toth,Luisa Torres,Antony Vinh,Hyun Ah Kim,Hannah X. Chu,Megan A. Evans,Meaghan E Kuzmich,Grant R. Drummond,Alan T. Remaley,Kerry‐Anne Rye,Christopher G. Sobey,Kasey C. Vickers
出处
期刊:Journal of Cerebral Blood Flow and Metabolism [SAGE Publishing]
卷期号:40 (6): 1300-1315 被引量:18
标识
DOI:10.1177/0271678x19858637
摘要

Ischemic stroke is a major cause of mortality and long-term disability with limited treatment options, and a greater understanding of the gene regulatory mechanisms underlying ischemic stroke-associated neuroinflammation is required for new therapies. To study ischemic stroke in vivo, mice were subjected to sustained ischemia by intraluminal filament-induced middle cerebral artery occlusion (MCAo) for 24 h without reperfusion or transient ischemia for 30 min followed by 23.5 h reperfusion, and brain miRNA and mRNA expression changes were quantified by TaqMan OpenArrays and gene (mRNA) expression arrays, respectively. Sustained ischemia resulted in 18 significantly altered miRNAs and 392 altered mRNAs in mouse brains compared to Sham controls; however, the transient ischemic condition was found to impact only 6 miRNAs and 126 mRNAs. miR-367-3p was found to be significantly decreased in brain homogenates with sustained ischemia. G protein-coupled receptor, family C, group 5, member A ( Gprc5a), a miR-367-3p target gene, was found to be significantly increased with sustained ischemia. In primary neurons, inhibition of endogenous miR-367-3p resulted in a significant increase in Gprc5a expression. Moreover, miR-367-3p was found to be co-expressed with GPRC5A in human neurons. Results suggest that loss of miR-367-3p suppression of GPRC5A may contribute to neuroinflammation associated with ischemic stroke.

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