Organoid modeling identifies USP3-AS1 as a novel promoter in colorectal cancer liver metastasis through increasing glucose-driven histone lactylation.

IF 6.9 1区 医学 Q1 CHEMISTRY, MULTIDISCIPLINARY Acta Pharmacologica Sinica Pub Date : 2025-01-21 DOI:10.1038/s41401-024-01465-8
Jia-Min Zhou, Wei-Xing Dai, Ren-Jie Wang, Wei-Qi Xu, Zhen Xiang, Yi-Xiu Wang, Ti Zhang, Yi-Ming Zhao, Lu Wang, An-Rong Mao
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Abstract

Dysregulation of long non-coding RNAs (lncRNAs) is common in colorectal cancer liver metastasis (CRLM). Emerging evidence links lncRNAs to multiple stages of metastasis from initial migration to colonization of distant organs. In this study we investigated the role of lncRNAs in metabolic reprogramming during CRLM using patient-derived organoid (PDO) models. We established five pairs of PDOs from primary tumors and matched liver metastatic lesions, followed by microarray analysis. We found that USP3-AS1 was significantly upregulated in CRLM-derived PDOs compared to primary tumors. High level of USP3-AS1 was positively associated with postoperative liver metastasis and negatively correlated with the prognosis of colorectal cancer (CRC) patients. Overexpression of USP3-AS1 significantly enhanced both sphere formation efficiency and liver metastasis in PDOs. Gene set enrichment analysis revealed that USP3-AS1 upregulation significantly enriched glycolysis and MYC signaling pathways. Metabolomics analysis confirmed that USP3-AS1 promoted glycolysis in PDOs, whereas glycolysis inhibition partially attenuated the effects of USP3-AS1 overexpression on PDO growth and liver metastasis. We revealed that USP3-AS1 stabilized MYC via post-translational deubiquitination, thereby promoting glycolysis. We demonstrated that USP3-AS1 increased the stability of USP3 mRNA, resulting in higher USP3 protein expression. The elevated USP3 protein then interacted with MYC and promoted its stability by deubiquitination. The USP3-AS1-MYC-glycolysis regulatory axis modulated liver metastasis by promoting H3K18 lactylation and CDC27 expression in CRC. In conclusion, USP3-AS1 is a novel promoter of CRLM by inducing histone lactylation.

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类器官模型通过增加葡萄糖驱动的组蛋白乳酸化,确定USP3-AS1作为结直肠癌肝转移的新启动子。
长链非编码rna (lncRNAs)的失调在结直肠癌肝转移(CRLM)中很常见。新出现的证据将lncrna与从初始迁移到远端器官定植的多个转移阶段联系起来。在这项研究中,我们使用患者源性类器官(PDO)模型研究了lncrna在CRLM期间代谢重编程中的作用。我们建立了5对来自原发肿瘤和匹配的肝转移灶的PDOs,然后进行微阵列分析。我们发现,与原发肿瘤相比,USP3-AS1在crlm衍生的PDOs中显著上调。高水平的USP3-AS1与结直肠癌(CRC)患者术后肝转移呈正相关,与预后负相关。过表达USP3-AS1可显著提高PDOs的球形成效率和肝转移。基因集富集分析显示,USP3-AS1上调显著富集糖酵解和MYC信号通路。代谢组学分析证实,USP3-AS1促进PDO的糖酵解,而糖酵解抑制部分减弱USP3-AS1过表达对PDO生长和肝转移的影响。我们发现USP3-AS1通过翻译后去泛素化稳定MYC,从而促进糖酵解。我们发现USP3- as1增加了USP3 mRNA的稳定性,导致USP3蛋白的表达增加。升高的USP3蛋白与MYC相互作用,并通过去泛素化促进其稳定性。usp3 - as1 - myc糖酵解调节轴通过促进H3K18乳酸化和CDC27在结直肠癌中的表达来调节肝转移。综上所述,USP3-AS1通过诱导组蛋白乳酸化是一种新的CRLM启动子。
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来源期刊
Acta Pharmacologica Sinica
Acta Pharmacologica Sinica 医学-化学综合
CiteScore
15.10
自引率
2.40%
发文量
4365
审稿时长
2 months
期刊介绍: APS (Acta Pharmacologica Sinica) welcomes submissions from diverse areas of pharmacology and the life sciences. While we encourage contributions across a broad spectrum, topics of particular interest include, but are not limited to: anticancer pharmacology, cardiovascular and pulmonary pharmacology, clinical pharmacology, drug discovery, gastrointestinal and hepatic pharmacology, genitourinary, renal, and endocrine pharmacology, immunopharmacology and inflammation, molecular and cellular pharmacology, neuropharmacology, pharmaceutics, and pharmacokinetics. Join us in sharing your research and insights in pharmacology and the life sciences.
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