Transcription factor Klf9 controls bile acid reabsorption and enterohepatic circulation in mice via promoting intestinal Asbt expression

转录因子 Klf9 通过促进肠道 Asbt 表达控制小鼠胆汁酸重吸收和肠肝循环

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作者:Shuang Liu #, Man Liu #, Meng-Lin Zhang, Cui-Zhe Wang, Yin-Liang Zhang, Yu-Jie Zhang, Chun-Yuan Du, Su-Fang Sheng, Wei Wang, Ya-Tong Fan, Jia-Ni Song, Jin-Can Huang, Yue-Yao Feng, Wei Qiao, Jin-Long Huang, Yu-Hui Li, Lu Zhou, Jun Zhang, Yong-Sheng Chang

Abstract

Bile acid (BA) homeostasis is regulated by the extensive cross-talk between liver and intestine. Many bile-acid-activated signaling pathways have become attractive therapeutic targets for the treatment of metabolic disorders. In this study we investigated the regulatory mechanisms of BA in the intestine. We showed that the BA levels in the gallbladder and faeces were significantly increased, whereas serum BA levels decreased in systemic Krüppel-like factor 9 (Klf9) deficiency (Klf9-/-) mice. These phenotypes were also observed in the intestine-specific Klf9-deleted (Klf9vil-/-) mice. In contrast, BA levels in the gallbladder and faeces were reduced, whereas BA levels in the serum were increased in intestinal Klf9 transgenic (Klf9Rosa26+/+) mice. By using a combination of biochemical, molecular and functional assays, we revealed that Klf9 promoted the expression of apical sodium-dependent bile acid transporter (Asbt) in the terminal ileum to enhance BA absorption in the intestine. Reabsorbed BA affected liver BA synthetic enzymes by regulating Fgf15 expression. This study has identified a previously neglected transcriptional pathway that regulates BA homeostasis.

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