An atlas of ferroptosis-induced secretomes

铁死亡诱导分泌组的图谱

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作者:F Isil Yapici ,Eric Seidel ,Alina Dahlhaus ,Josephine Weber ,Christina Schmidt ,Adriano de Britto Chaves Filho ,Ming Yang ,Maria Nenchova ,Emre Güngör ,Jenny Stroh ,Ioanna Kotouza ,Julia Beck ,Ali T Abdallah ,Jan-Wilm Lackmann ,Christina M Bebber ,Ariadne Androulidaki ,Peter Kreuzaler ,Almut Schulze ,Christian Frezza ,Silvia von Karstedt

Abstract

Cells undergoing regulated necrosis systemically communicate with the immune system via the release of protein and non-protein secretomes. Ferroptosis is a recently described iron-dependent type of regulated necrosis driven by massive lipid peroxidation. While membrane rupture occurs during ferroptosis, a comprehensive appraisal of ferroptotic secretomes and their potential biological activity has been lacking. Here, we apply a multi-omics approach to provide an atlas of ferroptosis-induced secretomes and reveal a novel function in macrophage priming. Proteins with assigned DAMP and innate immune system function, such as MIF, heat shock proteins (HSPs), and chaperones, were released from ferroptotic cells. Non-protein secretomes with assigned inflammatory function contained oxylipins as well as TCA- and methionine-cycle metabolites. Interestingly, incubation of bone marrow-derived macrophages (BMDMs) with ferroptotic supernatants induced transcriptional reprogramming consistent with priming. Indeed, exposure to ferroptotic supernatants enhanced LPS-induced cytokine production. These results define a catalog of ferroptosis-induced secretomes and identify a biological activity in macrophage priming with important implications for the fine-tuning of inflammatory processes.

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