肠道单羧酸转运蛋白1介导乳酸在肠道内的转运,并以性别二态模式调节小鼠的代谢稳态

Shuo Wang, Lingling Zhang, Jingyu Zhao, Meijuan Bai, Yijun Lin, Qianqian Chu, Jue Gong, Ju Qiu, Yan Chen
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引用次数: 0

摘要

由Slc16a1基因编码的单羧酸转运蛋白1 (MCT1)是一种乳酸和其他单羧酸盐的质子偶联转运蛋白。最近发现mct1介导的乳酸转运调节多种生物功能。然而,肠内MCT1和乳酸如何调节机体的生理和病理生理尚不清楚。在本研究中,我们建立了肠上皮中特异性缺失Slc16a1的小鼠模型(Slc16a1IKO小鼠),并研究了MCT1在肠道中的功能。当喂食高脂肪食物时,Slc16a1IKO雄性小鼠的葡萄糖耐量和胰岛素敏感性有所改善,而Slc16a1IKO雌性小鼠的肥胖程度只会增加。雄性小鼠肠道MCT1缺乏与促炎通路下调以及循环炎症细胞因子水平降低有关,包括肿瘤坏死因子α (TNFα)和C-C基序趋化因子配体2 (CCL2)。乳酸对体外促炎巨噬细胞有刺激作用。Slc16a1IKO雄性小鼠体内肠道巨噬细胞数量减少。雄性小鼠肠道中Slc16a1的缺失降低了肠道间质乳酸水平。此外,雌性激素处理雄性小鼠降低了肠间质乳酸水平,消除了Slc16a1IKO与野生型小鼠之间葡萄糖稳态的差异。肠道MCT1缺乏也阻碍了乳酸和短链脂肪酸从肠道到门静脉的运输。Slc16a1缺失对雄性小鼠葡萄糖稳态的影响部分是由肠道菌群的改变介导的。总之,我们的工作揭示了肠道MCT1以性别依赖的方式调节葡萄糖稳态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intestinal monocarboxylate transporter 1 mediates lactate transport in the gut and regulates metabolic homeostasis of mouse in a sex-dimorphic pattern
Abstract The monocarboxylate transporter 1 (MCT1), encoded by gene Slc16a1, is a proton-coupled transporter for lactate and other monocarboxylates. MCT1-mediated lactate transport was recently found to regulate various biological functions. However, how MCT1 and lactate in the intestine modulate the physiology and pathophysiology of the body is unclear. In this study, we generated a mouse model with specific deletion of Slc16a1 in the intestinal epithelium (Slc16a1IKO mice) and investigated the functions of MCT1 in the gut. When fed a high-fat diet, Slc16a1IKO male mice had improvement in glucose tolerance and insulin sensitivity, while Slc16a1IKO female mice only had increased adiposity. Deficiency of intestinal MCT1 in male mice was associated with downregulation of pro-inflammatory pathways, together with decreased circulating levels of inflammatory cytokines including tumor necrosis factor alpha (TNFα) and C-C motif chemokine ligand 2 (CCL2). Lactate had a stimulatory effect on pro-inflammatory macrophages in vitro. The number of intestinal macrophages was reduced in Slc16a1IKO male mice in vivo. Intestinal deletion of Slc16a1 in male mice reduced interstitial lactate level in the intestine. In addition, treatment of male mice with estrogen lowered interstitial lactate level in the intestine and abolished the difference of glucose homeostasis between Slc16a1IKO and wild-type mice. Deficiency of intestinal MCT1 also blocked transport of lactate and short-chain fatty acids from the intestine to the portal vein. The effect of Slc16a1 deletion on glucose homeostasis in male mice was partly mediated by alterations in gut microbiota. In conclusion, our work reveals that intestinal MCT1 regulates glucose homeostasis in a sex-dependent manner.
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