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多组学分析鉴定出小胶质细胞 annexin A2 是缺血再灌注损伤中 NF-κB 促炎信号的关键介质。

Multi-Omics Profiling Identifies Microglial Annexin A2 as a Key Mediator of NF-κB Pro-inflammatory Signaling in Ischemic Reperfusion Injury.

机构信息

State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, Hunan University, Changsha, Hunan, China.

State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, Hunan University, Changsha, Hunan, China; Shenzhen Research Institute, Hunan University, Shenzhen, Guangdong, China.

出版信息

Mol Cell Proteomics. 2024 Feb;23(2):100723. doi: 10.1016/j.mcpro.2024.100723. Epub 2024 Jan 20.

Abstract

Cerebral stroke is one of the leading causes of mortality and disability worldwide. Restoring the cerebral circulation following a period of occlusion and subsequent tissue oxygenation leads to reperfusion injury. Cerebral ischemic reperfusion (I/R) injury triggers immune and inflammatory responses, apoptosis, neuronal damage, and even death. However, the cellular function and molecular mechanisms underlying cerebral I/R-induced neuronal injury are incompletely understood. By integrating proteomic, phosphoproteomic, and transcriptomic profiling in mouse hippocampi after cerebral I/R, we revealed that the differentially expressed genes and proteins mainly fall into several immune inflammatory response-related pathways. We identified that Annexin 2 (Anxa2) was exclusively upregulated in microglial cells in response to cerebral I/R in vivo and oxygen-glucose deprivation and reoxygenation (OGD/R) in vitro. RNA-seq analysis revealed a critical role of Anxa2 in the expression of inflammation-related genes in microglia via the NF-κB signaling. Mechanistically, microglial Anxa2 is required for nuclear translocation of the p65 subunit of NF-κB and its transcriptional activity upon OGD/R in BV2 microglial cells. Anxa2 knockdown inhibited the OGD/R-induced microglia activation and markedly reduced the expression of pro-inflammatory factors, including TNF-α, IL-1β, and IL-6. Interestingly, conditional medium derived from Anxa2-depleted BV2 cell cultures with OGD/R treatment alleviated neuronal death in vitro. Altogether, our findings revealed that microglia Anxa2 plays a critical role in I/R injury by regulating NF-κB inflammatory responses in a non-cell-autonomous manner, which might be a potential target for the neuroprotection against cerebral I/R injury.

摘要

脑卒屮是全球导致死亡和残疾的主要原因之一。在阻塞及随后的组织缺氧后恢复脑循环会导致再灌注损伤。脑缺血再灌注(I/R)损伤会引发免疫和炎症反应、细胞凋亡、神经元损伤,甚至死亡。然而,脑 I/R 诱导的神经元损伤的细胞功能和分子机制尚不完全清楚。通过整合脑 I/R 后小鼠海马的蛋白质组、磷酸蛋白质组和转录组谱分析,我们发现差异表达的基因和蛋白主要集中在几个免疫炎症反应相关途径中。我们发现,在体内脑 I/R 和体外氧葡萄糖剥夺和再氧合(OGD/R)中,膜联蛋白 2(Anxa2)仅在小胶质细胞中上调。RNA-seq 分析显示,Anxa2 通过 NF-κB 信号在小胶质细胞中炎症相关基因的表达中起关键作用。在机制上,小胶质细胞 Anxa2 是 NF-κB p65 亚基在 OGD/R 后核转位及其转录活性所必需的。在 BV2 小胶质细胞中,Anxa2 敲低抑制了 OGD/R 诱导的小胶质细胞激活,并显著降低了促炎因子 TNF-α、IL-1β 和 IL-6 的表达。有趣的是,用 OGD/R 处理来自 Anxa2 耗尽的 BV2 细胞培养物的条件培养基在体外减轻了神经元死亡。总之,我们的研究结果表明,小胶质细胞 Anxa2 通过非细胞自主方式调节 NF-κB 炎症反应,在 I/R 损伤中发挥关键作用,这可能是针对脑 I/R 损伤的神经保护的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/014d/10879806/659c4a486ba7/ga1.jpg

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