Centre for Cancer and Inflammation Research, School of Chinese Medicine, Hong Kong Baptist University, Hong Kong, China.
International Institute for Translational Chinese Medicine, Guangzhou University of Chinese Medicine, Guangzhou, Guangdong, 510006, China.
Cell Death Dis. 2021 Aug 12;12(8):791. doi: 10.1038/s41419-021-04076-x.
Although high-fat diet (HFD) has been implicated in the development of colorectal cancer (CRC), the critical signaling molecule that mediates the cancer growth is not well-defined. Identifying the master regulator that controls CRC growth under HFD can facilitate the development of effective therapeutics for the cancer treatment. In this study, the global lipidomics and RNA sequencing data show that, in the tumor tissues of CRC-bearing mouse models, HFD not only increases tumor weight, but also the palmitic acid level and TLR4 expression, which are reduced when HFD is replaced by control diet. These concomitant changes suggest the roles of palmitic acid and TLR4 in CRC growth. Subsequent studies show that palmitic acid regulates TLR4 expression in PU.1-dependent manner. Knockdown of PU.1 or mutations of PU.1-binding site on TLR4 promoter abolish the palmitic acid-increased TLR4 expression. The role of palmitic acid/PU.1/TLR4 axis in CRC growth is further examined in cell model and animal models that are fed either HFD or palmitic acid-rich diet. More importantly, iTRAQ proteomics data show that knockdown of TLR4 changes the metabolic enzyme profiles in the tumor tissues, which completely abolish the HFD-enhanced ATP production and cancer growth. Our data clearly demonstrate that TLR4 is a master regulator for CRC growth under HFD by programming cancer metabolism.
虽然高脂肪饮食(HFD)已被认为与结直肠癌(CRC)的发生有关,但介导癌症生长的关键信号分子尚不清楚。确定在 HFD 下控制 CRC 生长的主调控因子,可以促进开发针对癌症治疗的有效疗法。在这项研究中,全面脂质组学和 RNA 测序数据表明,在携带 CRC 模型的小鼠的肿瘤组织中,HFD 不仅增加了肿瘤重量,而且还增加了棕榈酸水平和 TLR4 表达,而当 HFD 被对照饮食取代时,这些水平会降低。这些伴随的变化表明棕榈酸和 TLR4 在 CRC 生长中起作用。随后的研究表明,棕榈酸以 PU.1 依赖性方式调节 TLR4 的表达。敲低 PU.1 或突变 TLR4 启动子上的 PU.1 结合位点可消除棕榈酸增加的 TLR4 表达。在接受 HFD 或富含棕榈酸饮食喂养的细胞模型和动物模型中进一步研究了棕榈酸/PU.1/TLR4 轴在 CRC 生长中的作用。更重要的是,iTRAQ 蛋白质组学数据表明,TLR4 的敲低改变了肿瘤组织中的代谢酶谱,完全消除了 HFD 增强的 ATP 产生和癌症生长。我们的数据清楚地表明,TLR4 通过编程癌症代谢,成为 HFD 下 CRC 生长的主要调控因子。