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低剂量辐射通过 PA-PYCR1 轴通过肠道微生物群夸大 HFD 诱导的代谢功能障碍。

Low-dose radiation exaggerates HFD-induced metabolic dysfunction by gut microbiota through PA-PYCR1 axis.

机构信息

Department of Occupational and Environmental Health, Xiangya School of Public Health, Central South University, Changsha, Hunan Province, 410078, China.

Department of Radiation Biology, Beijing Key Laboratory for Radiobiology, Beijing Institute of Radiation Medicine, AMMS, Beijing, China.

出版信息

Commun Biol. 2022 Sep 10;5(1):945. doi: 10.1038/s42003-022-03929-1.

Abstract

Co-exposure of High-fat-diet (HFD) behavior and environmental low-dose radiation (LDR) is common among majority occupational workers, but the synergism of this co-exposure in metabolic health is poorly understood. This study aimed to investigate the impact of gut microbiota and its metabolites on the regulation of HFD accompanied by LDR-associated with metabolic dysfunction and insulin resistance. Here, we reported that Parasutterella was markedly elevated in the gut microbiota of mice in co-exposure of HFD and LDR, accompanied by increased pyrrolidinecarboxylic acid (PA) level in both intestine and plasma. Transplantation of fecal microbiota from mice with co-exposure HFD and LDR with metabolic dysfunction resulted in increased disruption of metabolic dysfunction, insulin resistance and increased PYCR1 (Pyrroline-5-carboxylate reductase 1) expression. Mechanistically, intestinal barrier was damaged more serious in mice with co-exposure of HFD and LDR, leading high PA level in plasma, activating PYCR1 expression to inhibit insulin Akt/mTOR (AKT kinase-transforming protein/Serine threonine-protein kinase) signaling pathway to aggravate HFD-induced metabolic impairments. This study suggests a new avenue for interventions against western diet companied with low dose radiation exposure-driven metabolic impairments.

摘要

高脂肪饮食(HFD)行为和环境低剂量辐射(LDR)的共同暴露在大多数职业工作者中很常见,但这种共同暴露对代谢健康的协同作用知之甚少。本研究旨在探讨肠道微生物群及其代谢物对高脂肪饮食伴随低剂量辐射相关代谢功能障碍和胰岛素抵抗的调节作用。在这里,我们报道了在高脂肪饮食和低剂量辐射共同暴露的小鼠肠道微生物群中,Parasutterella 明显升高,同时肠道和血浆中的吡咯啉羧酸(PA)水平也升高。来自高脂肪饮食和低剂量辐射伴代谢功能障碍的小鼠的粪便微生物群移植导致代谢功能障碍、胰岛素抵抗和增加的 PYCR1(吡咯啉-5-羧酸还原酶 1)表达的破坏增加。在高脂肪饮食和低剂量辐射共同暴露的小鼠中,肠道屏障受到更严重的损伤,导致血浆中 PA 水平升高,激活 PYCR1 表达,抑制胰岛素 Akt/mTOR(AKT 激酶转化蛋白/丝氨酸苏氨酸蛋白激酶)信号通路,加重高脂肪饮食引起的代谢损伤。这项研究为对抗西方饮食伴低剂量辐射暴露驱动的代谢损伤提供了新的干预途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e12/9464247/d52425632ad8/42003_2022_3929_Fig1_HTML.jpg

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