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评估半胱天冬酶激活以评估固有免疫细胞死亡。

Evaluation of Caspase Activation to Assess Innate Immune Cell Death.

机构信息

Department of Immunology, St. Jude Children's Research Hospital.

Department of Immunology, St. Jude Children's Research Hospital;

出版信息

J Vis Exp. 2023 Jan 20(191). doi: 10.3791/64308.

Abstract

Innate immunity provides the critical first line of defense in response to pathogens and sterile insults. A key mechanistic component of this response is the initiation of innate immune programmed cell death (PCD) to eliminate infected or damaged cells and propagate immune responses. However, excess PCD is associated with inflammation and pathology. Therefore, understanding the activation and regulation of PCD is a central aspect of characterizing innate immune responses and identifying new therapeutic targets across the disease spectrum. This protocol provides methods for characterizing innate immune PCD activation by monitoring caspases, a family of cysteine-dependent proteases that are often associated with diverse PCD pathways, including apoptosis, pyroptosis, necroptosis, and PANoptosis. Initial reports characterized caspase-2, caspase-8, caspase-9, and caspase-10 as initiator caspases and caspase-3, caspase-6, and caspase-7 as effector caspases in apoptosis, while later studies found the inflammatory caspases, caspase-1, caspase-4, caspase-5, and caspase-11, drive pyroptosis. It is now known that there is extensive crosstalk between the caspases and other innate immune and cell death molecules across the previously defined PCD pathways, identifying a key knowledge gap in the mechanistic understanding of innate immunity and PCD and leading to the characterization of PANoptosis. PANoptosis is a unique innate immune inflammatory PCD pathway regulated by PANoptosome complexes, which integrate components, including caspases, from other cell death pathways. Here, methods for assessing the activation of caspases in response to various stimuli are provided. These methods allow for the characterization of PCD pathways both in vitro and in vivo, as activated caspases undergo proteolytic cleavage that can be visualized by western blotting using optimal antibodies and blotting conditions. A protocol and western blotting workflow have been established that allow for the assessment of the activation of multiple caspases from the same cellular population, providing a comprehensive characterization of the PCD processes. This method can be applied across research areas in development, homeostasis, infection, inflammation, and cancer to evaluate PCD pathways throughout cellular processes in health and disease.

摘要

先天免疫为应对病原体和无菌性损伤提供了第一道关键防线。这种反应的一个关键机制组成部分是启动先天免疫程序性细胞死亡(PCD),以消除感染或受损的细胞并传播免疫反应。然而,过多的 PCD 与炎症和病理学有关。因此,了解 PCD 的激活和调节是表征先天免疫反应和确定疾病谱中新型治疗靶点的核心方面。本方案提供了通过监测半胱氨酸依赖性蛋白酶家族(通常与多种 PCD 途径相关,包括凋亡、细胞焦亡、坏死性凋亡和全凋亡)来表征先天免疫 PCD 激活的方法。最初的报告将 caspase-2、caspase-8、caspase-9 和 caspase-10 鉴定为起始 caspase,caspase-3、caspase-6 和 caspase-7 为凋亡中的效应 caspase,而后来的研究发现炎症性 caspase,caspase-1、caspase-4、caspase-5 和 caspase-11,驱动细胞焦亡。现在已知,在先前定义的 PCD 途径中,caspase 与其他先天免疫和细胞死亡分子之间存在广泛的串扰,这确定了对先天免疫和 PCD 机制理解的一个关键知识空白,并导致全凋亡的表征。全凋亡是一种独特的先天免疫炎症性 PCD 途径,由 PANoptosome 复合物调节,该复合物整合了来自其他细胞死亡途径的成分,包括 caspase。这里提供了用于评估各种刺激物对 caspase 激活的方法。这些方法允许在体外和体内表征 PCD 途径,因为激活的 caspase 会发生蛋白水解切割,可通过使用最佳抗体和印迹条件的 Western 印迹进行可视化。已经建立了一种方案和 Western 印迹工作流程,允许从同一细胞群评估多个 caspase 的激活,从而全面表征 PCD 过程。该方法可应用于发育、稳态、感染、炎症和癌症等研究领域,以评估健康和疾病中细胞过程中的 PCD 途径。

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