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GDF11 通过 ALK5 依赖性信号通路迅速增加肝癌细胞中的脂质积累。

GDF11 rapidly increases lipid accumulation in liver cancer cells through ALK5-dependent signaling.

机构信息

International Clinical Research Center, St. Anne's University Hospital, Brno, Czech Republic.

Bioinformatics Unit, IRCCS Casa Sollievo della Sofferenza, San Giovanni Rotondo, Italy.

出版信息

Biochim Biophys Acta Mol Cell Biol Lipids. 2021 Jun;1866(6):158920. doi: 10.1016/j.bbalip.2021.158920. Epub 2021 Mar 6.

Abstract

Hepatocellular carcinoma (HCC) is one of the fastest-growing causes of cancer-related mortalities worldwide and this trend is mimicked by the surge of non-alcoholic fatty liver disease (NAFLD). Altered hepatic lipid metabolism promotes HCC development through inflammation and activation of oncogenes. GDF11 is a member of the TGF-β superfamily and recent data have implicated GDF11 as an anti-aging factor that can alleviate high-fat diet induced obesity, hyperglycemia, insulin resistance and NAFLD. However, its role in hepatic lipid metabolism is still not fully delineated. The aim of the present study was to characterize the role of GDF11 in hepatic and HCC cells lipid accumulation. To achieve this, we performed imaging, biochemical, lipidomic, and transcriptomic analyses in primary hepatocytes and in HCC cells treated with GDF11 to study the GDF11-activated signaling pathways. GDF11 treatment rapidly triggered ALK5-dependent SMAD2/3 nuclear translocation and elevated lipid droplets in HCC cells, but not in primary hepatocytes. In HCC cells, ALK5 inhibition hampered GDF11-mediated SMAD2/3 signaling and attenuated lipid accumulation. Using ultra-high-performance liquid chromatography/mass spectrometry, we detected increased accumulation of longer acyl-chain di/tri-acylglycerols and glycerophospholipids. Unbiased transcriptomic analysis identified TGF-β and PI3K-AKT signaling among the top pathways/cellular processes activated in GDF11 treated HCC cells. In summary, GDF11 supplementation promotes pro-lipogenic gene expression and lipid accumulation in HCC cells. Integration of our "omics" data pointed to a GDF11-induced upregulation of de novo lipogenesis through activation of ALK5/SMAD2/3/PI3K-AKT pathways. Thus, GDF11 could contribute to metabolic reprogramming and dysregulation of lipid metabolism in HCC cells, without effects on healthy hepatocytes.

摘要

肝细胞癌 (HCC) 是全球癌症相关死亡率增长最快的原因之一,这种趋势与非酒精性脂肪性肝病 (NAFLD) 的激增相吻合。肝脏脂质代谢的改变通过炎症和癌基因的激活促进 HCC 的发展。GDF11 是 TGF-β 超家族的成员,最近的数据表明 GDF11 是一种抗衰老因子,可减轻高脂肪饮食引起的肥胖、高血糖、胰岛素抵抗和 NAFLD。然而,其在肝脏脂质代谢中的作用尚不完全明确。本研究旨在探讨 GDF11 在肝和 HCC 细胞脂质积累中的作用。为此,我们在原代肝细胞和用 GDF11 处理的 HCC 细胞中进行了成像、生化、脂质组学和转录组学分析,以研究 GDF11 激活的信号通路。GDF11 处理可迅速触发 ALK5 依赖性 SMAD2/3 核转位,并在 HCC 细胞中增加脂滴,但在原代肝细胞中则不然。在 HCC 细胞中,ALK5 抑制阻碍了 GDF11 介导的 SMAD2/3 信号传导并减弱了脂质积累。使用超高效液相色谱/质谱法,我们检测到更长酰基链二/三酰基甘油和甘油磷脂的积累增加。无偏转录组学分析确定 TGF-β 和 PI3K-AKT 信号通路是 GDF11 处理的 HCC 细胞中激活的顶级途径/细胞过程之一。总之,GDF11 补充可促进 HCC 细胞中促脂肪生成基因的表达和脂质积累。我们的“组学”数据的整合表明,GDF11 通过激活 ALK5/SMAD2/3/PI3K-AKT 通路诱导从头脂肪生成的上调。因此,GDF11 可能有助于 HCC 细胞的代谢重编程和脂质代谢失调,而对健康肝细胞没有影响。

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