Article

PXR mediates mifepristone-induced hepatomegaly in mice

Xin-peng Yao1, Ting-ying Jiao1, Yi-ming Jiang1, Shi-cheng Fan1, Ying-yuan Zhao1, Xiao Yang1, Yue Gao1, Fei Li2, Yan-ying Zhou1, Pan-pan Chen1, Min Huang1, Hui-chang Bi1
1 Guangdong Provincial Key Laboratory of New Drug Design and Evaluation, School of Pharmaceutical Sciences, Sun Yat-sen University, Guangzhou 510006, China
2 Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650201, China and 3School of Pharmacy, Southern Medical University, Guangzhou 510515, China
Correspondence to: Hui-chang Bi: bihchang@mail.sysu.edu.cn,
DOI: 10.1038/s41401-021-00633-4
Received: 29 December 2020
Accepted: 25 February 2021
Advance online: 29 March 2021

Abstract

Mifepristone (Mif), an effective synthetic steroidal antiprogesterone drug, is widely used for medical abortion and pregnancy prevention. Due to its anti-glucocorticoid effect, high-dose Mif is also used to treat Cushing’s syndrome. Mif was reported to active pregnane X receptor (PXR) in vitro and PXR can induce hepatomegaly via activation and interaction with yes-associated protein (YAP) pathway. High-dose Mif was reported to induce hepatomegaly in rats and mice, but the underlying mechanism remains unclear. Here, the role of PXR was studied in Mif-induced hepatomegaly in C57BL/6 mice and Pxr-knockout mice. The results demonstrated that high-dose Mif (100 mg · kg−1 · d−1, i.p.) treatment for 5 days significantly induced hepatomegaly with enlarged hepatocytes and promoted proliferation, but low dose of Mif (5 mg · kg−1 · d−1, i.p.) cannot induce hepatomegaly. The dual-luciferase reporter gene assays showed that Mif can activate human PXR in a concentration-dependent manner. In addition, Mif could promote nuclear translocation of PXR and YAP, and significantly induced the expression of PXR, YAP, and their target proteins such as CYP3A11, CYP2B10, UGT1A1, ANKRD, and CTGF. However, Mif (100 mg · kg−1 · d−1, i.p.) failed to induce hepatomegaly in Pxr-knockout mice, as well as hepatocyte enlargement and proliferation, further indicating that Mif-induced hepatomegaly is PXR-dependent. In summary, this study demonstrated that PXR-mediated Mif-induced hepatomegaly in mice probably via activation of YAP pathway. This study provides new insights in Mif-induced hepatomegaly, and provides novel evidence on the crucial function of PXR in liver enlargement and regeneration.
Keywords: mifepristone; hepatomegaly; pregnane X receptor (PXR); yes-associated protein (YAP)

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