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基于循环脂质与细胞 MAPK/mTOR 轴之间的反馈,HBV 相关肝癌中的代谢自养。

Metabolic self-feeding in HBV-associated hepatocarcinoma centered on feedback between circulation lipids and the cellular MAPK/mTOR axis.

机构信息

Minimally invasive therapy center, Shanghai Cancer Center, Fudan University Shanghai Cancer Center, Shanghai, 200032, China.

Cancer Institute, Fudan University Shanghai Cancer Center, Shanghai, 200032, China.

出版信息

Cell Commun Signal. 2024 May 21;22(1):280. doi: 10.1186/s12964-024-01619-5.

Abstract

INTRODUCTION

Hepatitis B Virus (HBV) is widely recognized as a "metabolic virus" that disrupts hepatic metabolic homeostasis, rendering it one of the foremost risk factors for hepatocellular carcinoma (HCC). Except for antiviral therapy, the fundamental principles underlying HBV and HBV HCC have remained unchanged, limiting HCC treatment options.

OBJECTIVES

In this study, we aim to identify the distinctive metabolic profile of HBV-associated HCC, with the promise of identifying novel metabolic targets that confer survival advantages and ultimately impede cancer progression.

METHODS

We employed a comprehensive methodology to evaluate metabolic alterations systematically. Initially, we analyzed transcriptomic and proteomic data obtained from a public database, subsequently validating these findings within our test cohort at both the proteomic and transcriptomic levels. Additionally, we conducted a comprehensive analysis of tissue metabolomics profiles, lipidomics, and the activity of the MAPK and AKT signaling pathway to corroborate the abovementioned changes.

RESULTS

Our multi-omics approach revealed distinct metabolic dysfunctions associated with HBV-associated HCC. Specifically, we observed upregulated steroid hormone biosynthesis, primary bile acid metabolism, and sphingolipid metabolism in HBV-associated HCC patients' serum. Notably, metabolites involved in primary bile acid and sphingolipids can activate the MAPK/mTOR pathway. Tissue metabolomics and lipidomics analyses further validated the serum metabolic alterations, particularly alterations in lipid composition and accumulation of unsaturated fatty acids.

CONCLUSION

Our findings emphasize the pivotal role of HBV in HCC metabolism, elucidating the activation of a unique MAPK/mTOR signaling axis by primary bile acids and sphingolipids. Moreover, the hyperactive MAPK/mTOR signaling axis transduction leads to significant reprogramming in lipid metabolism within HCC cells, further triggering the activation of the MAPK/mTOR pathway in turn, thereby establishing a self-feeding circle driven by primary bile acids and sphingolipids.

摘要

简介

乙型肝炎病毒(HBV)被广泛认为是一种“代谢病毒”,它破坏了肝脏的代谢平衡,使其成为肝细胞癌(HCC)的首要危险因素之一。除了抗病毒治疗外,HBV 和 HBV HCC 的基本原理仍然没有改变,这限制了 HCC 的治疗选择。

目的

在这项研究中,我们旨在确定与 HBV 相关的 HCC 的独特代谢特征,以期确定赋予生存优势并最终阻碍癌症进展的新代谢靶点。

方法

我们采用了一种全面的方法来系统地评估代谢变化。首先,我们分析了来自公共数据库的转录组和蛋白质组数据,随后在我们的测试队列中分别在蛋白质组和转录组水平上验证了这些发现。此外,我们还进行了组织代谢组学谱、脂质组学以及 MAPK 和 AKT 信号通路活性的全面分析,以证实上述变化。

结果

我们的多组学方法揭示了与 HBV 相关的 HCC 相关的独特代谢功能障碍。具体来说,我们观察到 HBV 相关 HCC 患者血清中类固醇激素生物合成、初级胆汁酸代谢和鞘脂代谢上调。值得注意的是,参与初级胆汁酸和鞘脂代谢的代谢物可以激活 MAPK/mTOR 通路。组织代谢组学和脂质组学分析进一步验证了血清代谢变化,特别是脂质组成的变化和不饱和脂肪酸的积累。

结论

我们的研究结果强调了 HBV 在 HCC 代谢中的关键作用,阐明了初级胆汁酸和鞘脂通过激活独特的 MAPK/mTOR 信号轴来发挥作用。此外,过度活跃的 MAPK/mTOR 信号轴转导导致 HCC 细胞内脂质代谢的显著重编程,进而反过来激活 MAPK/mTOR 通路,从而建立了一个由初级胆汁酸和鞘脂驱动的自养循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1563/11106961/b0f668d46fcb/12964_2024_1619_Figa_HTML.jpg

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