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FBW7 通过减轻炎症相关的神经元凋亡来保护小鼠免受脊髓损伤。

FBW7 protects against spinal cord injury by mitigating inflammation-associated neuronal apoptosis in mice.

机构信息

Department of Anesthesiology, Shenzhen Samii Medical Center, Shenzhen City, 518118, China.

Affiliated Cancer Hospital & Institute of Guangzhou Medical University, Guangzhou, 510095, China.

出版信息

Biochem Biophys Res Commun. 2020 Nov 19;532(4):576-583. doi: 10.1016/j.bbrc.2020.08.071. Epub 2020 Sep 6.

Abstract

Spinal cord injury (SCI) leads to severe and long-lasting neurological disability. Presently, the lack of effective therapies for SCI is largely attributable to an incomplete understanding of its pathogenesis. F-box and WD repeat domain-containing protein 7 (FBW7, also known as FBXW7) is a type of E3 ubiquitin ligase complex, and plays essential roles in regulating different pathological and physiological processes. In this study, we attempted to explore the effects of FBW7 on SCI progression by the in vivo and in vitro experiments. SCI mice showed significantly reduced expression of FBW7 in spinal cord tissues. Promoting FBW7 expression via intrathecal injection of AAV9/FBW7 effectively improved locomotor function in SCI mice. Neuronal death in spinal cords of SCI mice was obviously ameliorated by FBW7 over-expression, along with greatly decreased expression of cleaved Caspase-3. In addition, microglial activation in spinal cord specimens was detected in SCI mice through increasing Iba-1 expression levels, which was, however, attenuated in SCI mice injected with AAV9/FBW7. Additionally, FBW7 over-expression dramatically restrained inflammatory response in spinal cord tissues of SCI mice, as evidenced by the down-regulated expression of tumor necrosis factor-α (TNF-α) and interleukin 1β (IL-1β) through blocking the activation of nuclear factor-κB (NF-κB) signaling. These anti-inflammatory effects of FBW7 were confirmed in LPS-stimulated mouse microglial BV2 cells. Finally, our in vitro studies showed that conditional medium (CM) collected from LPS-incubated BV2 cells markedly induced apoptosis in the isolated primary spinal neurons; However, this effect was overtly ameliorated by CM from LPS-exposed BV2 cells over-expressing FBW7. Thus, FBW7-regulated inflammation in microglial cells was involved in the amelioration of neuronal apoptosis during SCI development. Collectively, these findings illustrated that FBW7 expression was down-regulated in spinal cords of SCI mice, and promoting its expression could effectively mitigate SCI progression by repressing microglial inflammation and neuronal death.

摘要

脊髓损伤(SCI)导致严重且持久的神经功能障碍。目前,缺乏有效的 SCI 治疗方法主要是因为对其发病机制的认识不完整。F-box 和 WD 重复结构域蛋白 7(FBW7,也称为 FBXW7)是一种 E3 泛素连接酶复合物,在调节不同的病理和生理过程中发挥着重要作用。在这项研究中,我们试图通过体内和体外实验来探索 FBW7 对 SCI 进展的影响。SCI 小鼠脊髓组织中 FBW7 的表达明显降低。通过鞘内注射 AAV9/FBW7 促进 FBW7 的表达,可有效改善 SCI 小鼠的运动功能。FBW7 过表达明显减轻 SCI 小鼠脊髓中的神经元死亡,同时Cleaved Caspase-3 的表达明显降低。此外,通过增加 Iba-1 表达水平,在 SCI 小鼠的脊髓标本中检测到小胶质细胞的激活,而在注射 AAV9/FBW7 的 SCI 小鼠中则减弱。此外,FBW7 过表达通过阻断核因子-κB(NF-κB)信号通路的激活,显著抑制 SCI 小鼠脊髓组织中的炎症反应,表现为肿瘤坏死因子-α(TNF-α)和白细胞介素 1β(IL-1β)的表达下调。在 LPS 刺激的小鼠小胶质细胞 BV2 细胞中证实了 FBW7 的这些抗炎作用。最后,我们的体外研究表明,来自 LPS 孵育的 BV2 细胞的条件培养基(CM)显著诱导分离的原代脊髓神经元凋亡;然而,来自 LPS 暴露的过表达 FBW7 的 BV2 细胞的 CM 明显改善了这种作用。因此,FBW7 调节小胶质细胞中的炎症参与了 SCI 发展过程中神经元凋亡的改善。总之,这些发现表明 SCI 小鼠脊髓中的 FBW7 表达下调,促进其表达可通过抑制小胶质细胞炎症和神经元死亡有效减轻 SCI 进展。

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