Neutrophil metabolomics in severe COVID-19 reveal GAPDH as a suppressor of neutrophil extracellular trap formation

中性粒细胞胞外陷阱 代谢组 甘油醛3-磷酸脱氢酶 糖酵解 先天免疫系统 中性粒细胞弹性蛋白酶 免疫系统 呼吸爆发 生物 磷酸戊糖途径 细胞外 炎症 免疫学 化学 细胞生物学 代谢组学 新陈代谢 生物化学 生物信息学 脱氢酶
作者
Yafeng Li,Jessica S. Hook,Ding Qing,Xue Xiao,Stephen S. Chung,Marcel Mettlen,Lin Xu,Jessica G. Moreland,Michalis Agathocleous
出处
期刊:Nature Communications [Springer Nature]
卷期号:14 (1) 被引量:22
标识
DOI:10.1038/s41467-023-37567-w
摘要

Severe COVID-19 is characterized by an increase in the number and changes in the function of innate immune cells including neutrophils. However, it is not known how the metabolome of immune cells changes in patients with COVID-19. To address these questions, we analyzed the metabolome of neutrophils from patients with severe or mild COVID-19 and healthy controls. We identified widespread dysregulation of neutrophil metabolism with disease progression including in amino acid, redox, and central carbon metabolism. Metabolic changes in neutrophils from patients with severe COVID-19 were consistent with reduced activity of the glycolytic enzyme GAPDH. Inhibition of GAPDH blocked glycolysis and promoted pentose phosphate pathway activity but blunted the neutrophil respiratory burst. Inhibition of GAPDH was sufficient to cause neutrophil extracellular trap (NET) formation which required neutrophil elastase activity. GAPDH inhibition increased neutrophil pH, and blocking this increase prevented cell death and NET formation. These findings indicate that neutrophils in severe COVID-19 have an aberrant metabolism which can contribute to their dysfunction. Our work also shows that NET formation, a pathogenic feature of many inflammatory diseases, is actively suppressed in neutrophils by a cell-intrinsic mechanism controlled by GAPDH.
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