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Gpr35 塑造肠道微生物生态,调节肝脂肪变性。

Gpr35 shapes gut microbial ecology to modulate hepatic steatosis.

机构信息

Department of Pharmacy, Zhongda Hospital, School of Medicine, Southeast University, Nanjing 210009, China; State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing 210009, Jiangsu, China.

State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing 210009, Jiangsu, China; Laboratory of Metabolic Regulation and Drug Target Discovery, School of Pharmacy, China Pharmaceutical University, Nanjing 210009, Jiangsu, China.

出版信息

Pharmacol Res. 2023 Mar;189:106690. doi: 10.1016/j.phrs.2023.106690. Epub 2023 Feb 8.

Abstract

The gut microbiome is closely shaped by host genetic and dietary factors to regulate metabolic health and disease. However, the signaling mechanisms underlying such interactions have been largely unclear. Here we identify G protein-coupled receptor 35 (Gpr35) as a regulator of gut microbial ecology and the susceptibility to obesity and hepatic steatosis in mice. Both global and intestinal epithelia specific ablation of Gpr35 aggravated high-fat diet (HFD)-induced metabolic disturbance and hepatic steatosis in mice. Gpr35 deficiency induced a remarkable loss of goblet cells and an extensive remodeling of the gut microbiome, featuring enrichment of the Bacteroides and Ruminococcus genera. Antibiotics treatment and co-housing alleviated the metabolic disturbance markers in Gpr35 deficient mice. Spatiotemporal profiling and mono-colonization screening revealed that Ruminococcus gnavus synergized with HFD to promote hepatic steatosis possibly via tryptophan and phenylalanine pathway metabolites. Our results provide mechanistic insights into a genetic-diet-microbe interplay that dictates susceptibility to metabolic disorder.

摘要

肠道微生物组受宿主遗传和饮食因素的密切影响,从而调节代谢健康和疾病。然而,这种相互作用的信号机制在很大程度上还不清楚。在这里,我们发现 G 蛋白偶联受体 35(Gpr35)是调节肠道微生物生态和小鼠肥胖和脂肪肝易感性的一个调控因子。Gpr35 的全局和肠道上皮细胞特异性缺失加剧了高脂肪饮食(HFD)诱导的代谢紊乱和小鼠脂肪肝。Gpr35 缺乏导致杯状细胞大量丢失和肠道微生物组的广泛重塑,其特征是拟杆菌属和真杆菌属的富集。抗生素治疗和共饲养减轻了 Gpr35 缺失小鼠的代谢紊乱标志物。时空分析和单定植筛选表明,柔嫩梭菌与 HFD 协同作用促进脂肪肝的形成,可能是通过色氨酸和苯丙氨酸途径代谢物。我们的研究结果为决定代谢紊乱易感性的遗传-饮食-微生物相互作用提供了机制上的见解。

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