The notion that neutrophils exist as a homogeneous population is being replaced with the knowledge that neutrophils adopt different functional states. Neutrophils can have a pro-inflammatory phenotype or an anti-inflammatory state, but how these states are regulated remains unclear. Here, we demonstrated that the neutrophil-expressed G-protein-coupled receptor (GPCR) Mrgpra1 is a negative regulator of neutrophil bactericidal functions. Mrgpra1-mediated signaling was driven by its ligand, neuropeptide FF (NPFF), which dictated the balance between pro- and anti-inflammatory programming. Specifically, the Mrgpra1-NPFF axis counter-regulated interferon (IFN) γ-mediated neutrophil polarization during acute lung infection by favoring an alternative-like polarization, suggesting that it may act to balance overzealous neutrophilic responses. Distinct, cross-regulated populations of neutrophils were the primary source of NPFF and IFNγ during infection. As a subset of neutrophils at steady state expressed NPFF, these findings could have broad implications in various infectious and inflammatory diseases. Therefore, a neutrophil-intrinsic pathway determines their cellular fate, function, and magnitude of infection.
A GPCR-neuropeptide axis dampens hyperactive neutrophils by promoting an alternative-like polarization during bacterial infection.
GPCR-神经肽轴通过促进细菌感染期间的替代极化来抑制过度活跃的中性粒细胞
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作者:Gour Naina, Yong Hwan Mee, Magesh Aishwarya, Atakkatan Aishwarya, Andrade Felipe, Lajoie Stephane, Dong Xinzhong
| 期刊: | Immunity | 影响因子: | 26.300 |
| 时间: | 2024 | 起止号: | 2024 Feb 13; 57(2):333-348 |
| doi: | 10.1016/j.immuni.2024.01.003 | 研究方向: | 神经科学、细胞生物学 |
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