SIRPα modulates microglial efferocytosis and neuroinflammation following experimental subarachnoid hemorrhage via the SHP1/STAT6 axis.

IF 10.1 1区 医学 Q1 IMMUNOLOGY Journal of Neuroinflammation Pub Date : 2025-03-19 DOI:10.1186/s12974-025-03414-6
Bingtao Zhang, Yan Zou, Qikai Tang, Zixuan Yuan, Kun Jiang, Zhaoxiang Zhang, Shujuan Chen, Qi Wu, Xiaoming Zhou, Xin Zhang
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Abstract

Subarachnoid hemorrhage induces extensive neuronal cell death, leading to the release of damage-associated molecular patterns (DAMPs). These DAMPs, along with hemoglobin and cell corpses, trigger localized inflammation. Signal regulatory protein alpha (SIRPα) plays a crucial role in efferocytosis by acting as a "don't eat-me" signal, modulating inflammation and tissue homeostasis. However, the precise function and regulatory mechanisms of SIRPα in efferocytosis remain unclear. Proteomic analysis of cerebrospinal fluid (CSF) reveals that SIRPα levels are significantly elevated in the CSF of SAH patients and correlate with clinical outcomes. In vivo and in vitro studies show that microglial knockdown of SIRPα promotes efferocytosis and attenuates neuroinflammation following SAH. SIRPα inhibits efferocytosis by recruiting and phosphorylating SHP1 and SHP2 through phosphorylation of four tyrosine residues in its cytoplasmic domain, with SHP1 playing a particularly critical role. Mutation of these tyrosine residues to non-phosphorylatable alanine residues enhances efferocytosis and reduces neuroinflammation in vitro. RNA-seq analysis suggests that this mutation upregulates the expression of "eat-me" signals, MerTK and CD36, and identifies STAT6 as a key transcription factor involved in this process. In conclusion, SIRPα plays a central role in regulating microglia efferocytosis and neuroinflammation after SAH via the SHP1/STAT6 axis. Targeting this pathway may provide a promising therapeutic approach for SAH.

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SIRPα通过SHP1/STAT6轴调节实验性蛛网膜下腔出血后的小胶质细胞efferocyte和神经炎症。
蛛网膜下腔出血引起广泛的神经元细胞死亡,导致损伤相关分子模式(DAMPs)的释放。这些damp与血红蛋白和细胞尸体一起引发局部炎症。信号调节蛋白α (SIRPα)作为“不要吃我”信号,调节炎症和组织稳态,在efferocytosis中起着至关重要的作用。然而,SIRPα在efferocytosis中的确切功能和调控机制尚不清楚。脑脊液蛋白质组学分析显示,SAH患者脑脊液中SIRPα水平显著升高,并与临床预后相关。体内和体外研究表明,小胶质细胞SIRPα的下调促进了SAH后的efferocytosis并减轻了神经炎症。SIRPα通过在胞质区域磷酸化四个酪氨酸残基来募集和磷酸化SHP1和SHP2,从而抑制efferocytosis,其中SHP1起着特别关键的作用。这些酪氨酸残基突变为非磷酸化的丙氨酸残基,可增强体外efferocytosis并减少神经炎症。RNA-seq分析表明,该突变上调了“eat-me”信号、MerTK和CD36的表达,并确定STAT6是参与这一过程的关键转录因子。综上所述,SIRPα通过SHP1/STAT6轴在SAH后小胶质细胞efferocysis和神经炎症的调节中发挥核心作用。靶向这一途径可能为SAH提供一种有希望的治疗方法。
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来源期刊
Journal of Neuroinflammation
Journal of Neuroinflammation 医学-神经科学
CiteScore
15.90
自引率
3.20%
发文量
276
审稿时长
1 months
期刊介绍: The Journal of Neuroinflammation is a peer-reviewed, open access publication that emphasizes the interaction between the immune system, particularly the innate immune system, and the nervous system. It covers various aspects, including the involvement of CNS immune mediators like microglia and astrocytes, the cytokines and chemokines they produce, and the influence of peripheral neuro-immune interactions, T cells, monocytes, complement proteins, acute phase proteins, oxidative injury, and related molecular processes. Neuroinflammation is a rapidly expanding field that has significantly enhanced our knowledge of chronic neurological diseases. It attracts researchers from diverse disciplines such as pathology, biochemistry, molecular biology, genetics, clinical medicine, and epidemiology. Substantial contributions to this field have been made through studies involving populations, patients, postmortem tissues, animal models, and in vitro systems. The Journal of Neuroinflammation consolidates research that centers around common pathogenic processes. It serves as a platform for integrative reviews and commentaries in this field.
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