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卡格列净对肝癌细胞生长和代谢重编程的影响:代谢组学和绝对定量蛋白质组学(iMPAQT)的多组学分析。

Effects of canagliflozin on growth and metabolic reprograming in hepatocellular carcinoma cells: Multi-omics analysis of metabolomics and absolute quantification proteomics (iMPAQT).

机构信息

Division of Gastroenterology, Department of Medicine, Kurume University School of Medicine, Kurume, Japan.

Liver Cancer Division, Research Center for Innovative Cancer Therapy, Kurume University, Kurume, Japan.

出版信息

PLoS One. 2020 Apr 28;15(4):e0232283. doi: 10.1371/journal.pone.0232283. eCollection 2020.

Abstract

AIM

Metabolic reprograming is crucial in the proliferation of hepatocellular carcinoma (HCC). Canagliflozin (CANA), a sodium-glucose cotransporter 2 (SGLT2) inhibitor, affects various metabolisms. We investigated the effects of CANA on proliferation and metabolic reprograming of HCC cell lines using multi-omics analysis of metabolomics and absolute quantification proteomics (iMPAQT).

METHODS

The cells were counted 72 hours after treatment with CANA (10 μM; n = 5) or dimethyl sulfoxide (control [CON]; n = 5) in Hep3B and Huh7 cells. In Hep3B cells, metabolomics and iMPAQT were used to evaluate the levels of metabolites and metabolic enzymes in the CANA and CON groups (each n = 5) 48 hours after treatment.

RESULTS

Seventy-two hours after treatment, the number of cells in the CANA group was significantly decreased compared to that in the CON group in Hep3B and Huh7 cells. On multi-omics analysis, there was a significant difference in the levels of 85 metabolites and 68 metabolic enzymes between the CANA and CON groups. For instance, CANA significantly downregulated ATP synthase F1 subunit alpha, a mitochondrial electron transport system protein (CON 297.28±20.63 vs. CANA 251.83±22.83 fmol/10 μg protein; P = 0.0183). CANA also significantly upregulated 3-hydroxybutyrate, a beta-oxidation metabolite (CON 530±14 vs. CANA 854±68 arbitrary units; P<0.001). Moreover, CANA significantly downregulated nucleoside diphosphate kinase 1 (CON 110.30±11.37 vs. CANA 89.14±8.39 fmol/10 μg protein; P = 0.0172).

CONCLUSIONS

We found that CANA suppressed the proliferation of HCC cells through alterations in mitochondrial oxidative phosphorylation metabolism, fatty acid metabolism, and purine and pyrimidine metabolism. Thus, CANA may suppress the proliferation of HCC by regulating metabolic reprograming.

摘要

目的

代谢重编程在肝细胞癌(HCC)的增殖中至关重要。坎格列净(CANA),一种钠-葡萄糖共转运蛋白 2(SGLT2)抑制剂,可影响多种代谢。我们通过代谢组学和绝对定量蛋白质组学(iMPAQT)的多组学分析,研究了 CANA 对 HCC 细胞系增殖和代谢重编程的影响。

方法

用 CANA(10 μM;n = 5)或二甲基亚砜(对照 [CON];n = 5)处理 Hep3B 和 Huh7 细胞 72 小时后,对细胞进行计数。在 Hep3B 细胞中,用代谢组学和 iMPAQT 评估处理后 48 小时 CANA 和 CON 组细胞中代谢物和代谢酶的水平(每组 n = 5)。

结果

与 CON 组相比,处理 72 小时后,CANA 组 Hep3B 和 Huh7 细胞中的细胞数量明显减少。在多组学分析中,CANA 和 CON 组之间有 85 种代谢物和 68 种代谢酶的水平存在显著差异。例如,CANA 显著下调线粒体电子传递系统蛋白 ATP 合酶 F1 亚基α(CON 297.28±20.63 vs. CANA 251.83±22.83 fmol/10 μg 蛋白;P = 0.0183)。CANA 还显著上调β氧化代谢物 3-羟丁酸(CON 530±14 vs. CANA 854±68 任意单位;P<0.001)。此外,CANA 显著下调核苷二磷酸激酶 1(CON 110.30±11.37 vs. CANA 89.14±8.39 fmol/10 μg 蛋白;P = 0.0172)。

结论

我们发现 CANA 通过改变线粒体氧化磷酸化代谢、脂肪酸代谢以及嘌呤和嘧啶代谢来抑制 HCC 细胞的增殖。因此,CANA 可能通过调节代谢重编程来抑制 HCC 的增殖。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7c2/7188283/bd6334a35337/pone.0232283.g001.jpg

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