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MBP-1 通过形成孔介导对膜的损伤,并通过 mtDNA 放大损伤。

Membrane damage by MBP-1 is mediated by pore formation and amplified by mtDNA.

机构信息

Institute of Pharmacology, University of Bern, 3010 Bern, Switzerland.

Department of Chemistry, Biochemistry, and Pharmaceutical Sciences, University of Bern, 3012 Bern, Switzerland.

出版信息

Cell Rep. 2024 Apr 23;43(4):114084. doi: 10.1016/j.celrep.2024.114084. Epub 2024 Apr 6.

Abstract

Eosinophils play a crucial role in host defense while also contributing to immunopathology through the release of inflammatory mediators. Characterized by distinctive cytoplasmic granules, eosinophils securely store and rapidly release various proteins exhibiting high toxicity upon extracellular release. Among these, major basic protein 1 (MBP-1) emerges as an important mediator in eosinophil function against pathogens and in eosinophil-associated diseases. While MBP-1 targets both microorganisms and host cells, its precise mechanism remains elusive. We demonstrate that formation of small pores by MBP-1 in lipid bilayers induces membrane permeabilization and disrupts potassium balance. Additionally, we reveal that mitochondrial DNA (mtDNA) present in eosinophil extracellular traps (EETs) amplifies MBP-1 toxic effects, underscoring the pivotal role of mtDNA in EETs. Furthermore, we present evidence indicating that absence of CpG methylation in mtDNA contributes to the regulation of MBP-1-mediated toxicity. Taken together, our data suggest that the mtDNA scaffold within extracellular traps promotes MBP-1 toxicity.

摘要

嗜酸性粒细胞在宿主防御中发挥着关键作用,同时通过释放炎症介质也有助于免疫病理学。嗜酸性粒细胞的细胞质颗粒具有特征性,可安全储存并迅速释放各种蛋白质,这些蛋白质在细胞外释放时具有很高的毒性。其中,主要碱性蛋白 1(MBP-1)是嗜酸性粒细胞对抗病原体和与嗜酸性粒细胞相关疾病功能的重要介质。虽然 MBP-1 靶向微生物和宿主细胞,但它的确切机制仍不清楚。我们证明 MBP-1 在脂质双层中形成小孔会诱导膜通透性,并破坏钾平衡。此外,我们揭示了存在于嗜酸性粒细胞细胞外陷阱(EETs)中的线粒体 DNA(mtDNA)放大了 MBP-1 的毒性作用,强调了 mtDNA 在 EETs 中的关键作用。此外,我们提供的证据表明 mtDNA 中 CpG 甲基化的缺失有助于调节 MBP-1 介导的毒性。总之,我们的数据表明,细胞外陷阱中的 mtDNA 支架促进了 MBP-1 的毒性。

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