Proteomic Characterization of 1000 Human and Murine Neutrophils Freshly Isolated From Blood and Sites of Sterile Inflammation

对从血液和无菌性炎症部位新鲜分离的1000个人类和小鼠中性粒细胞进行蛋白质组学表征

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作者:Susmita Ghosh ,Ali Ata Tuz ,Martin Stenzel ,Vikramjeet Singh ,Mathis Richter ,Oliver Soehnlein ,Emanuel Lange ,Robert Heyer ,Zülal Cibir ,Alexander Beer ,Marcel Jung ,Dennis Nagel ,Dirk M Hermann ,Anja Hasenberg ,Anika Grüneboom ,Albert Sickmann ,Matthias Gunzer

Abstract

Neutrophils are indispensable for defense against pathogens. Injured tissue-infiltrated neutrophils can establish a niche of chronic inflammation and promote degeneration. Studies investigated transcriptome of single-infiltrated neutrophils which could misinterpret molecular states of these post mitotic cells. However, neutrophil proteome characterization has been challenging due to low harvests from affected tissues. Here, we present a workflow to obtain proteome of 1000 murine and human tissue-infiltrated neutrophils. We generated spectral libraries containing ∼6200 mouse and ∼5300 human proteins from circulating neutrophils. 4800 mouse and 3400 human proteins were recovered from 1000 cells with 102-108 copies/cell. Neutrophils from stroke-affected mouse brains adapted to the glucose-deprived environment with increased mitochondrial activity and ROS-production, while cells invading inflamed human oral cavities increased phagocytosis and granule release. We provide an extensive protein repository for resting human and mouse neutrophils, identify proteins lost in low input samples, thus enabling the proteomic characterization of limited tissue-infiltrated neutrophils.

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