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激活诱导营养利用的转变,从而对人中性粒细胞的细胞功能产生不同的影响。

Activation induces shift in nutrient utilization that differentially impacts cell functions in human neutrophils.

机构信息

Morgridge Institute for Research, Madison, WI 53715.

Nutrition and Metabolism Graduate Program, University of Wisconsin-Madison, Madison, WI 53706.

出版信息

Proc Natl Acad Sci U S A. 2024 Sep 24;121(39):e2321212121. doi: 10.1073/pnas.2321212121. Epub 2024 Sep 16.

Abstract

Neutrophils utilize a variety of metabolic sources to support their crucial functions as the first responders in innate immunity. Here, through in vivo and ex vivo isotopic tracing, we examined the contributions of different nutrients to neutrophil metabolism under specific conditions. Human peripheral blood neutrophils, in contrast to a neutrophil-like cell line, rely on glycogen storage as a major metabolic source under resting state but rapidly switch to primarily using extracellular glucose upon activation with various stimuli. This shift is driven by a substantial increase in glucose uptake, enabled by rapidly increased GLUT1 on cell membrane, that dominates the simultaneous increase in gross glycogen cycling capacity. Shifts in nutrient utilization impact neutrophil functions in a function-specific manner: oxidative burst depends on glucose utilization, whereas NETosis and phagocytosis can be flexibly supported by either glucose or glycogen, and neutrophil migration and fungal control are enhanced by the shift from glycogen utilization to glucose utilization. This work provides a quantitative and dynamic understanding of fundamental features in neutrophil metabolism and elucidates how metabolic remodeling shapes neutrophil functions, which has broad health relevance.

摘要

中性粒细胞利用多种代谢来源来支持其作为先天免疫中第一反应者的关键功能。在这里,我们通过体内和体外同位素示踪,检查了在特定条件下不同营养物质对中性粒细胞代谢的贡献。与中性粒细胞样细胞系不同,人外周血中性粒细胞在静息状态下依赖糖原储存作为主要代谢来源,但在受到各种刺激激活后,迅速切换到主要利用细胞外葡萄糖。这种转变是由细胞膜上 GLUT1 的迅速增加所驱动的,这使得葡萄糖摄取大量增加,从而主导了总糖原循环能力的同时增加。营养物质利用的转变以特定于功能的方式影响中性粒细胞的功能:氧化爆发依赖于葡萄糖的利用,而 NETosis 和吞噬作用可以灵活地由葡萄糖或糖原来支持,中性粒细胞迁移和真菌控制则通过从糖原利用向葡萄糖利用的转变而增强。这项工作提供了对中性粒细胞代谢基本特征的定量和动态理解,并阐明了代谢重塑如何塑造中性粒细胞的功能,这具有广泛的健康相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/180c/11441510/662376cb8141/pnas.2321212121fig01.jpg

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