A morphology and secretome map of pyroptosis.

IF 3.1 3区 生物学 Q3 CELL BIOLOGY
Molecular Biology of the Cell Pub Date : 2025-06-01 Epub Date: 2025-04-09 DOI:10.1091/mbc.E25-03-0119
Michael J Lippincott, Jenna Tomkinson, Dave Bunten, Milad Mohammadi, Johanna Kastl, Johannes Knop, Ralf Schwandner, Jiamin Huang, Grant Ongo, Nathaniel Robichaud, Milad Dagher, Andrés Mansilla-Soto, Cynthia Saravia-Estrada, Masafumi Tsuboi, Carla Basualto-Alarcón, Gregory P Way
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引用次数: 0

Abstract

Pyroptosis represents one type of programmed cell death. It is a form of inflammatory cell death that is canonically defined by caspase-1 cleavage and Gasdermin-mediated membrane pore formation. Caspase-1 initiates the inflammatory response (through IL-1β processing), and the N-terminal cleaved fragment of Gasdermin D polymerizes at the cell periphery forming pores to secrete proinflammatory markers. Cell morphology also changes in pyroptosis, with nuclear condensation and membrane rupture. However, recent research challenges canon, revealing a more complex secretome and morphological response in pyroptosis, including overlapping molecular characterization with other forms of cell death, such as apoptosis. Here, we take a multimodal, systems biology approach to characterize pyroptosis. We treated human peripheral blood mononuclear cells (PBMCs) with 36 different combinations of stimuli to induce pyroptosis or apoptosis. We applied both secretome profiling (nELISA) and high-content fluorescence microscopy (Cell Painting). To differentiate apoptotic, pyroptotic, and control cells, we used canonical secretome markers and modified our Cell Painting assay to mark the N-terminus of Gasdermin D. We trained hundreds of machine learning (ML) models to reveal intricate morphology signatures of pyroptosis that implicate changes across many different organelles and predict levels of many proinflammatory markers. Overall, our analysis provides a detailed map of pyroptosis which includes overlapping and distinct connections with apoptosis revealed through a mechanistic link between cell morphology and cell secretome.

焦亡的形态学和分泌组图。
焦亡是一种程序性细胞死亡。它是炎症细胞死亡的一种形式,通常由半胱天冬酶-1裂解和气皮蛋白介导的膜孔形成所定义。Caspase-1启动炎症反应(通过IL-1β加工),并且Gasdermin D的n端裂解片段在细胞周围聚合形成孔以分泌促炎标志物。细胞形态在焦亡过程中也发生变化,细胞核凝结,膜破裂。然而,最近的研究挑战了传统,揭示了焦亡中更复杂的分泌组和形态学反应,包括与其他形式的细胞死亡(如凋亡)重叠的分子特征。在这里,我们采取多模式,系统生物学的方法来表征焦亡。我们用36种不同的刺激组合来诱导人外周血单核细胞(PBMCs)的焦亡或凋亡。我们同时应用了分泌组分析(nELISA)和高含量荧光显微镜(Cell Painting)。为了区分凋亡细胞、焦亡细胞和对照细胞,我们使用了规范的分泌组标记物,并修改了我们的细胞绘画实验来标记Gasdermin d的n端。我们训练了数百个机器学习(ML)模型来揭示复杂的焦亡形态学特征,这些特征涉及许多不同细胞器的变化,并预测许多促炎标记物的水平。总的来说,我们的分析提供了一个详细的焦亡图谱,其中包括通过细胞形态和细胞分泌组之间的机制联系揭示的与细胞凋亡的重叠和不同的联系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Biology of the Cell
Molecular Biology of the Cell 生物-细胞生物学
CiteScore
6.00
自引率
6.10%
发文量
402
审稿时长
2 months
期刊介绍: MBoC publishes research articles that present conceptual advances of broad interest and significance within all areas of cell, molecular, and developmental biology. We welcome manuscripts that describe advances with applications across topics including but not limited to: cell growth and division; nuclear and cytoskeletal processes; membrane trafficking and autophagy; organelle biology; quantitative cell biology; physical cell biology and mechanobiology; cell signaling; stem cell biology and development; cancer biology; cellular immunology and microbial pathogenesis; cellular neurobiology; prokaryotic cell biology; and cell biology of disease.
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