Rspo3-mediated metabolic liver zonation regulates systemic glucose metabolism and body mass in mice.

IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences
PLoS Biology Pub Date : 2025-01-24 eCollection Date: 2025-01-01 DOI:10.1371/journal.pbio.3002955
Kenji Uno, Takuya Uchino, Takashi Suzuki, Yohei Sayama, Naoki Edo, Kiyoko Uno-Eder, Koji Morita, Toshio Ishikawa, Miho Koizumi, Hiroaki Honda, Hideki Katagiri, Kazuhisa Tsukamoto
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引用次数: 0

Abstract

The unique architecture of the liver consists of hepatic lobules, dividing the hepatic features of metabolism into 2 distinct zones, namely the pericentral and periportal zones, the spatial characteristics of which are broadly defined as metabolic zonation. R-spondin3 (Rspo3), a bioactive protein promoting the Wnt signaling pathway, regulates metabolic features especially around hepatic central veins. However, the functional impact of hepatic metabolic zonation, regulated by the Rspo3/Wnt signaling pathway, on whole-body metabolism homeostasis remains poorly understood. In this study, we analyze the local functions of Rspo3 in the liver and the remote actions of hepatic Rspo3 on other organs of the body by using murine models. Rspo3 expression analysis shows that Rspo3 expression patterns are spatiotemporally controlled in the murine liver such that it locates in the pericentral zones and converges after feeding, and the dynamics of these processes are disturbed in obesity. We find that viral-mediated induction of Rspo3 in hepatic tissue of obesity improves insulin resistance and prevents body weight gain by restoring attenuated organ insulin sensitivities, reducing adipose tissue enlargement and reversing overstimulated adaptive thermogenesis. Denervation of the hepatic vagus suppresses these remote effects, derived from hepatic Rspo3 induction, toward adipose tissues and skeletal muscle, suggesting that signals are transduced via the neuronal communication consisting of afferent vagal and efferent sympathetic nerves. Furthermore, the non-neuronal inter-organ communication up-regulating muscle lipid utilization is partially responsible for the ameliorations of both fatty liver development and reduced skeletal muscle quality in obesity. In contrast, hepatic Rspo3 suppression through Cre-LoxP-mediated recombination system exacerbates diabetes due to glucose intolerance and insulin resistance, promotes fatty liver development and decreases skeletal muscle quality, resulting in obesity. Taken together, our study results reveal that modulation of hepatic Rspo3 contributes to maintaining systemic glucose metabolism and body composition via a newly identified inter-organ communication mechanism.

rspo3介导的代谢肝分区调节小鼠全身糖代谢和体重。
肝脏独特的结构由肝小叶组成,将肝脏代谢特征划分为中心周围区和门静脉周围区2个不同的区域,其空间特征被广义地定义为代谢分区。R-spondin3 (Rspo3)是一种促进Wnt信号通路的生物活性蛋白,可调节肝脏中心静脉周围的代谢特征。然而,由Rspo3/Wnt信号通路调控的肝脏代谢分区对全身代谢稳态的功能影响尚不清楚。在本研究中,我们通过小鼠模型分析了Rspo3在肝脏中的局部功能以及肝脏Rspo3对身体其他器官的远程作用。Rspo3表达分析表明,Rspo3表达模式在小鼠肝脏中受时空控制,位于中心周围区,并在摄食后收敛,肥胖时这些过程的动态受到干扰。我们发现,病毒介导的肥胖肝组织中Rspo3的诱导可以改善胰岛素抵抗,并通过恢复减弱的器官胰岛素敏感性、减少脂肪组织扩大和逆转过度刺激的适应性产热来防止体重增加。肝迷走神经的去神经支配抑制了这些来自肝脏Rspo3诱导的对脂肪组织和骨骼肌的远程影响,这表明信号是通过由传入迷走神经和传出交感神经组成的神经元交流来传递的。此外,非神经元间器官通讯上调肌肉脂质利用是肥胖患者脂肪肝发展和骨骼肌质量降低的部分原因。相反,通过cre - loxp介导的重组系统抑制肝脏Rspo3会加重葡萄糖耐受不良和胰岛素抵抗引起的糖尿病,促进脂肪肝的发展,降低骨骼肌质量,导致肥胖。综上所述,我们的研究结果表明,通过一种新发现的器官间通讯机制,肝脏Rspo3的调节有助于维持全身葡萄糖代谢和身体成分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
PLoS Biology
PLoS Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOLOGY
CiteScore
15.40
自引率
2.00%
发文量
359
审稿时长
3-8 weeks
期刊介绍: PLOS Biology is the flagship journal of the Public Library of Science (PLOS) and focuses on publishing groundbreaking and relevant research in all areas of biological science. The journal features works at various scales, ranging from molecules to ecosystems, and also encourages interdisciplinary studies. PLOS Biology publishes articles that demonstrate exceptional significance, originality, and relevance, with a high standard of scientific rigor in methodology, reporting, and conclusions. The journal aims to advance science and serve the research community by transforming research communication to align with the research process. It offers evolving article types and policies that empower authors to share the complete story behind their scientific findings with a diverse global audience of researchers, educators, policymakers, patient advocacy groups, and the general public. PLOS Biology, along with other PLOS journals, is widely indexed by major services such as Crossref, Dimensions, DOAJ, Google Scholar, PubMed, PubMed Central, Scopus, and Web of Science. Additionally, PLOS Biology is indexed by various other services including AGRICOLA, Biological Abstracts, BIOSYS Previews, CABI CAB Abstracts, CABI Global Health, CAPES, CAS, CNKI, Embase, Journal Guide, MEDLINE, and Zoological Record, ensuring that the research content is easily accessible and discoverable by a wide range of audiences.
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