Metabolomics

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GABA regulates IL-1β production in macrophages


ABSTRACT: Neurotransmitters have been well-documented to determine immune cell fates; however, whether and how γ-amino butyric acid (GABA) shapes the function of innate immune cells is still obscure. Here, we demonstrated that GABA orchestrates macrophage maturation and inflammation. GABA treatment during macrophage maturation inhibits interleukin (IL)-1β production from inflammatory macrophages. Mechanistically, GABA enhances succinate-FAD-lysine demethylase1 (LSD1) signaling to regulate the histone demethylation of Bcl2l11 and Dusp2, lowering the formation of NLRP3-ASC-Caspase-1 complex. Meanwhile, GABA-succinate axis lowers succinylation of mitochondrial proteins to promote mitochondrial oxidative phosphorylation (OXPHOS). We also found that GABA alleviates the LPS-induced sepsis as well as high-fat diet-induced obesity in mice. Our study proves that GABA is potential in lessening the pro-inflammatory macrophage responses associating with metabolic reprogramming and protein succinylation, thus providing a strategy for treating macrophage-related inflammatory diseases.

INSTRUMENT(S): Liquid Chromatography MS - alternating - hilic

SUBMITTER: Jian Fu 

PROVIDER: MTBLS6337 | MetaboLights | 2023-01-31

REPOSITORIES: MetaboLights

Dataset's files

Source:
Action DRS
MTBLS6337 Other
FILES Other
a_MTBLS6337_LC-MS_alternating_hilic_metabolite_profiling.txt Txt
files-all.json Other
i_Investigation.txt Txt
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Publications

GABA regulates IL-1β production in macrophages.

Fu Jian J   Han Ziyi Z   Wu Zebiao Z   Xia Yaoyao Y   Yang Guan G   Yin Yulong Y   Ren Wenkai W  

Cell reports 20221201 10


Neurotransmitters have been well documented to determine immune cell fates; however, whether and how γ-amino butyric acid (GABA) shapes the function of innate immune cells is still obscure. Here, we demonstrate that GABA orchestrates macrophage maturation and inflammation. GABA treatment during macrophage maturation inhibits interleukin (IL)-1β production from inflammatory macrophages. Mechanistically, GABA enhances succinate-flavin adenine dinucleotide (FAD)-lysine specific demethylase1 (LSD1)  ...[more]

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