P2Y14R activation facilitates liver regeneration via CREB/DNMT3b/Dact-2/β-Catenin signals in acute liver failure

IF 14.6 1区 医学 Q1 PHARMACOLOGY & PHARMACY Acta Pharmaceutica Sinica. B Pub Date : 2025-02-01 DOI:10.1016/j.apsb.2025.01.004
Mengze Zhou , Yehong Li , Jialong Qian , Xinli Dong , Yanshuo Guo , Li Yin , Chunxiao Liu , Kun Hao , Qinghua Hu
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Abstract

Acute liver failure (ALF) is lack of broadly approved therapeutic strategy except liver transplantation. As a glycogen metabolic intermediate, UDP-glucose (UDP-G) has been considered to accelerate liver repairment. Nevertheless, the role of UDP-G and its receptor P2Y purinoceptor 14 (P2Y14R) in ALF remains unknown. The present study aims to investigate the role and underlying mechanisms of UDP-G/P2Y14R axis in ALF. In this study, hepatic P2Y14R is significantly increased in TAA-induced and partial hepatectomy-induced ALF, while knockout of whole-body P2Y14R aggravates liver failure, manifested by inhibiting β-Catenin-mediated liver regeneration. Consistently, P2Y14R deficiency exhibits impaired liver regeneration in mice suffer partial hepatectomy. Importantly, only hepatocellular specific deletion of P2Y14R (P2Y14Rflox/floxAlbcre/+) mice shows a similar phenomenon, rather than stellate cell specific deletion of P2Y14R (P2Y14Rflox/floxLratcre/+) mice. Mechanistically, P2Y14R induction regulates methylation of Dact-2 through CREB/DNMT3b signals in hepatocytes, subsequently inhibiting the expression of Dact-2 which is a stabilizer of β-Catenin degradation complex, leading to the activation of β-Catenin -mediated liver regeneration. Interestingly, the administration of exogenous UDP-G can accelerate liver regeneration and liver function recovery after partial hepatectomy in hepatocellular carcinoma mice. Together, the findings propose an unrecognized role of P2Y14R in ALF and provide an effective adjuvant strategy for treatment of ALF.

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P2Y14R激活在急性肝衰竭中通过CREB/DNMT3b/ act-2/β-Catenin信号促进肝脏再生
除肝移植外,急性肝衰竭(ALF)缺乏广泛认可的治疗策略。作为糖原代谢的中间体,udp -葡萄糖(UDP-G)被认为可以加速肝脏的修复。然而,UDP-G及其受体P2Y嘌呤受体14 (P2Y14R)在ALF中的作用尚不清楚。本研究旨在探讨UDP-G/P2Y14R轴在ALF中的作用及其机制。在本研究中,taa诱导的和部分肝切除诱导的ALF中肝脏P2Y14R显著升高,而全身P2Y14R敲除加重了肝衰竭,表现为抑制β- catenin介导的肝再生。同样,P2Y14R缺乏在部分肝切除小鼠中表现出肝脏再生受损。重要的是,只有肝细胞特异性缺失的P2Y14R (P2Y14Rflox/floxAlbcre/+)小鼠显示了类似的现象,而不是星状细胞特异性缺失的P2Y14R (P2Y14Rflox/floxLratcre/+)小鼠。机制上,P2Y14R诱导通过肝细胞中CREB/DNMT3b信号调控Dact-2的甲基化,进而抑制β-Catenin降解复合物稳定剂Dact-2的表达,激活β-Catenin介导的肝脏再生。有趣的是,外源性UDP-G可以加速肝细胞癌小鼠部分肝切除术后的肝脏再生和肝功能恢复。总之,这些发现提出了P2Y14R在ALF中未被认识的作用,并为ALF的治疗提供了有效的辅助策略。
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来源期刊
Acta Pharmaceutica Sinica. B
Acta Pharmaceutica Sinica. B Pharmacology, Toxicology and Pharmaceutics-General Pharmacology, Toxicology and Pharmaceutics
CiteScore
22.40
自引率
5.50%
发文量
1051
审稿时长
19 weeks
期刊介绍: The Journal of the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association oversees the peer review process for Acta Pharmaceutica Sinica. B (APSB). Published monthly in English, APSB is dedicated to disseminating significant original research articles, rapid communications, and high-quality reviews that highlight recent advances across various pharmaceutical sciences domains. These encompass pharmacology, pharmaceutics, medicinal chemistry, natural products, pharmacognosy, pharmaceutical analysis, and pharmacokinetics. A part of the Acta Pharmaceutica Sinica series, established in 1953 and indexed in prominent databases like Chemical Abstracts, Index Medicus, SciFinder Scholar, Biological Abstracts, International Pharmaceutical Abstracts, Cambridge Scientific Abstracts, and Current Bibliography on Science and Technology, APSB is sponsored by the Institute of Materia Medica, Chinese Academy of Medical Sciences, and the Chinese Pharmaceutical Association. Its production and hosting are facilitated by Elsevier B.V. This collaborative effort ensures APSB's commitment to delivering valuable contributions to the pharmaceutical sciences community.
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