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Jmjd3 通过调节 MMP-3 和 MMP-9 的表达介导脊髓损伤后的血脊髓屏障破坏。

Jmjd3 mediates blood-spinal cord barrier disruption after spinal cord injury by regulating MMP-3 and MMP-9 expressions.

机构信息

Age-Related and Brain Diseases Research Center, School of Medicine, Kyung Hee University, Seoul, 02447, Republic of Korea.

Department of Life Science, Sogang University, Seoul 04107, Republic of Korea.

出版信息

Neurobiol Dis. 2016 Nov;95:66-81. doi: 10.1016/j.nbd.2016.07.015. Epub 2016 Jul 15.

Abstract

The disruption of the blood-spinal cord barrier (BSCB) by matrix metalloprotease (MMP) activation is a detrimental event that leads to blood cell infiltration, inflammation, and apoptosis, thereby contributing to permanent neurological disability after spinal cord injury (SCI). However, the molecular mechanisms underlying Mmp gene regulation have not been fully elucidated. Here, we demonstrated the critical role of histone H3K27 demethylase Jmjd3 in the regulation of Mmp gene expression and BSCB disruption using in vitro cellular and in vivo animal models. We found that Jmjd3 up-regulation, in cooperation with NF-κB, after SCI is required for Mmp-3 and Mmp-9 gene expressions in injured vascular endothelial cells. In addition, Jmjd3 mRNA depletion inhibited Mmp-3 and Mmp-9 gene expressions and significantly attenuated BSCB permeability and the loss of tight junction proteins. These events further led to improved functional recovery, along with decreased hemorrhage, blood cell infiltration, inflammation, and cell death of neurons and oligodendrocytes after SCI. Thus, our findings suggest that Jmjd3 regulation may serve as a potential therapeutic intervention for preserving BSCB integrity following SCI.

摘要

基质金属蛋白酶(MMP)激活导致血脊髓屏障(BSCB)破坏是一种有害事件,可导致血细胞浸润、炎症和细胞凋亡,从而导致脊髓损伤(SCI)后永久性神经功能障碍。然而,Mmp 基因调控的分子机制尚未完全阐明。在这里,我们使用体外细胞和体内动物模型证明了组蛋白 H3K27 去甲基酶 Jmjd3 在调节 Mmp 基因表达和 BSCB 破坏中的关键作用。我们发现,SCI 后 Jmjd3 的上调与 NF-κB 合作,是损伤血管内皮细胞中 Mmp-3 和 Mmp-9 基因表达所必需的。此外,Jmjd3 mRNA 耗竭抑制了 Mmp-3 和 Mmp-9 基因的表达,并显著减轻了 BSCB 通透性以及紧密连接蛋白的丢失。这些事件进一步导致 SCI 后功能恢复改善,同时出血、血细胞浸润、炎症和神经元及少突胶质细胞死亡减少。因此,我们的研究结果表明,Jmjd3 的调节可能成为 SCI 后保持 BSCB 完整性的潜在治疗干预措施。

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