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抗 miR-223-5p 通过防止大鼠缺血后 NCKX2 下调改善缺血性损伤并改善神经功能。

Anti-miR-223-5p Ameliorates Ischemic Damage and Improves Neurological Function by Preventing NCKX2 Downregulation after Ischemia in Rats.

作者信息

Cuomo Ornella, Cepparulo Pasquale, Anzilotti Serenella, Serani Angelo, Sirabella Rossana, Brancaccio Paola, Guida Natascia, Valsecchi Valeria, Vinciguerra Antonio, Molinaro Pasquale, Formisano Luigi, Annunziato Lucio, Pignataro Giuseppe

机构信息

Division of Pharmacology, Department of Neuroscience, School of Medicine, University of Naples Federico II, 80131 Naples, Italy.

IRCCS SDN Napoli, 80142 Naples, Italy.

出版信息

Mol Ther Nucleic Acids. 2019 Dec 6;18:1063-1071. doi: 10.1016/j.omtn.2019.10.022. Epub 2019 Oct 28.

Abstract

It has been demonstrated that the K-dependent Na/Ca exchanger, NCKX2, is a new promising stroke neuroprotective target. However, because no pharmacological activator of NCKX2 is still available, microRNA (miRNA) may represent an alternative method to modulate NCKX2 expression. In particular, by bioinformatics analysis, miR-223-5p emerged as a possible modulator of NCKX2 expression. In the light of these premises, the aims of the present study were: (1) to evaluate miR-223-5p and NCKX2 expression in the temporoparietal cortex and striatum of rats subjected to transient middle cerebral artery occlusion; (2) to evaluate whether miR-223-5p targets the 3' UTR of the NCKX2 transcript; and (3) to evaluate the effect of miR-223-5p modulation on brain ischemic volume and neurological deficits. Our results showed that miR-223-5p expression increased in a time-dependent manner in the striatum of ischemic rats in parallel with NCKX2 downregulation, and that the transfection of cortical neurons with miR-223-5p induced a reduction of NCKX2 expression. Moreover, a luciferase assay showed that miR-223-5p specifically interacts with the NCKX2 3' UTR subregion (+7037 to +8697), thus repressing NCKX2 translation. More interestingly, intracerebroventricular infusion of anti-miR-223-5p prevented NCKX2 downregulation after ischemia, thus promoting neuroprotection. The present findings support the idea that blocking miR-223-5p by antimiRNA is a reasonable strategy to reduce the neurodetrimental effect induced by NCKX2 downregulation during brain ischemia.

摘要

已有研究表明,钾离子依赖的钠钙交换体NCKX2是一种新的、有前景的中风神经保护靶点。然而,由于目前仍没有NCKX2的药理学激活剂,微小RNA(miRNA)可能是调节NCKX2表达的一种替代方法。具体而言,通过生物信息学分析,miR-223-5p成为NCKX2表达的一种可能调节因子。基于上述前提,本研究的目的是:(1)评估短暂大脑中动脉闭塞大鼠颞顶叶皮质和纹状体中miR-223-5p和NCKX2的表达;(2)评估miR-223-5p是否靶向NCKX2转录本的3'非翻译区;(3)评估miR-223-5p调节对脑缺血体积和神经功能缺损的影响。我们的结果显示,缺血大鼠纹状体中miR-223-5p的表达随时间呈依赖性增加,同时NCKX2表达下调,并且用miR-223-5p转染皮质神经元可导致NCKX2表达降低。此外,荧光素酶报告基因检测表明,miR-223-5p与NCKX2 3'非翻译区亚区域(+7037至+8697)特异性相互作用,从而抑制NCKX2的翻译。更有趣的是,脑室内注入抗miR-223-5p可防止缺血后NCKX2下调,从而促进神经保护。本研究结果支持这样一种观点,即通过抗miRNA阻断miR-223-5p是减少脑缺血期间NCKX2下调诱导的神经损伤作用的合理策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ce4/6906731/b68c5ccd723a/gr1.jpg

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