University of Edinburgh Centre for Inflammation Research, Queen's Medical Research Institute, University of Edinburgh, Edinburgh, United Kingdom.
Division of Cell Signaling and Immunology, University of Dundee, Dundee, United Kingdom.
J Clin Invest. 2021 May 17;131(10). doi: 10.1172/JCI134073.
Limiting dysfunctional neutrophilic inflammation while preserving effective immunity requires a better understanding of the processes that dictate neutrophil function in the tissues. Quantitative mass-spectrometry identified how inflammatory murine neutrophils regulated expression of cell surface receptors, signal transduction networks, and metabolic machinery to shape neutrophil phenotypes in response to hypoxia. Through the tracing of labeled amino acids into metabolic enzymes, proinflammatory mediators, and granule proteins, we demonstrated that ongoing protein synthesis shapes the neutrophil proteome. To maintain energy supplies in the tissues, neutrophils consumed extracellular proteins to fuel central carbon metabolism. The physiological stresses of hypoxia and hypoglycemia, characteristic of inflamed tissues, promoted this extracellular protein scavenging with activation of the lysosomal compartment, further driving exploitation of the protein-rich inflammatory milieu. This study provides a comprehensive map of neutrophil proteomes, analysis of which has led to the identification of active catabolic and anabolic pathways that enable neutrophils to sustain synthetic and effector functions in the tissues.
限制功能失调性中性粒细胞炎症的同时保留有效的免疫功能,需要更好地了解决定中性粒细胞在组织中功能的过程。定量质谱分析确定了炎性小鼠中性粒细胞如何调节细胞表面受体、信号转导网络和代谢机制,以响应缺氧来塑造中性粒细胞表型。通过将标记的氨基酸追踪到代谢酶、促炎介质和颗粒蛋白中,我们证明了持续的蛋白质合成塑造了中性粒细胞的蛋白质组。为了在组织中维持能量供应,中性粒细胞消耗细胞外蛋白质来为中心碳代谢提供燃料。缺氧和低血糖是炎症组织的特征性生理应激,促进了溶酶体区室的激活,从而进一步利用富含蛋白质的炎症环境,进行这种细胞外蛋白质的清除。这项研究提供了中性粒细胞蛋白质组的全面图谱,对其分析导致了识别活跃的分解代谢和合成代谢途径,使中性粒细胞能够在组织中维持合成和效应功能。