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首页> 外文期刊>The journal of immunology >Inflammation-Associated Autophagy-Related Programmed Necrotic Death of Human Neutrophils Characterized by Organelle Fusion Events
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Inflammation-Associated Autophagy-Related Programmed Necrotic Death of Human Neutrophils Characterized by Organelle Fusion Events

机译:以细胞器融合事件为特征的人类嗜中性粒细胞炎症相关自噬相关的程序性坏死死亡

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摘要

The most common form of neutrophil death, under both physiological and inflammatory conditions, is apoptosis. In this study, we report a novel form of programmed necrotic cell death, associated with cytoplasmic organelle fusion events, that occurs in neutrophils exposed to GM-CSF and other inflammatory cytokines upon ligation of CD44. Strikingly, this type of neutrophil death requires PI3K activation, a signaling event usually involved in cellular survival pathways. In the death pathway reported in this study, PI3K is required for the generation of reactive oxygen species, which somehow trigger the generation of large cytoplasmic vacuoles, generated by the fusion of CD44-containing endosomes with autophagosomes and secondary, but not primary, granules. Neutrophils demonstrating vacuolization undergo rapid cell death that depends on receptor-interacting protein 1 kinase activity and papain family protease(s), but not caspases, that are most likely activated and released, respectively, during or as a consequence of organelle fusion. Vacuolized neutrophils are present in infectious and autoimmune diseases under in vivo conditions. Moreover, isolated neutrophils from such patients are highly sensitive toward CD44-mediated PI3K activation, reactive oxygen species production, and cell death, suggesting that the newly described autophagy-related form of programmed neutrophil necrosis plays an important role in inflammatory responses.
机译:在生理和炎症条件下,中性粒细胞死亡的最常见形式是细胞凋亡。在这项研究中,我们报告了一种新型形式的程序性坏死细胞死亡,与细胞质细胞器融合事件有关,这种疾病发生在CD44连接后暴露于GM-CSF和其他炎性细胞因子的嗜中性粒细胞中。令人惊讶的是,这种中性粒细胞死亡需要PI3K激活,这是一种通常与细胞存活途径有关的信号事件。在这项研究报道的死亡途径中,PI3K是产生活性氧的必需物质,而活性氧以某种方式触发了大细胞质液泡的产生,这些空泡是由含CD44的内体与自噬体和次级(而非初级)颗粒融合而产生的。表现出空泡作用的中性粒细胞迅速死亡,这取决于受体相互作用蛋白1激酶活性和木瓜蛋白酶,而不是半胱氨酸蛋白酶,它们最有可能在细胞器融合过程中或由于细胞器融合而激活和释放。真空中性粒细胞在体内条件下存在于传染性和自身免疫性疾病中。此外,从此类患者中分离出的嗜中性粒细胞对CD44介导的PI3K活化,活性氧产生和细胞死亡高度敏感,这表明新描述的程序性嗜中性粒细胞坏死的自噬相关形式在炎症反应中起重要作用。

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