Chanmee Theerawut, Ontong Pawared, Izumikawa Tomomi, Higashide Miho, Mochizuki Nobutoshi, Chokchaitaweesuk Chatchadawalai, Khansai Manatsanan, Nakajima Kazuki, Kakizaki Ikuko, Kongtawelert Prachya, Taniguchi Naoyuki, Itano Naoki
From the Department of Molecular Biosciences, Faculty of Life Sciences, and.
the Division of Engineering (Biotechnology), Graduate School of Engineering, Kyoto Sangyo University, Kita-ku, Kyoto 603-8555, Japan.
J Biol Chem. 2016 Nov 11;291(46):24105-24120. doi: 10.1074/jbc.M116.751263. Epub 2016 Oct 6.
Cancer stem cells (CSCs) represent a small subpopulation of self-renewing oncogenic cells. As in many other stem cells, metabolic reprogramming has been implicated to be a key characteristic of CSCs. However, little is known about how the metabolic features of cancer cells are controlled to orchestrate their CSC-like properties. We recently demonstrated that hyaluronan (HA) overproduction allowed plastic cancer cells to revert to stem cell states. Here, we adopted stable isotope-assisted tracing and mass spectrometry profiling to elucidate the metabolic features of HA-overproducing breast cancer cells. These integrated approaches disclosed an acceleration of metabolic flux in the hexosamine biosynthetic pathway (HBP). A metabolic shift toward glycolysis was also evident by quantitative targeted metabolomics, which was validated by the expression profiles of key glycolytic enzymes. Forced expression of glutamine:fructose-6-phosphate amidotransferase 1 (GFAT1), an HBP rate-limiting enzyme, resembled the results of HA overproduction with regard to HIF-1α accumulation and glycolytic program, whereas GFAT1 inhibition significantly decreased HIF-1α protein level in HA-overproducing cancer cells. Moreover, inhibition of the HBP-HIF-1 axis abrogated HA-driven glycolytic enhancement and reduced the CSC-like subpopulation. Taken together, our results provide compelling evidence that HA production regulates the metabolic and CSC-like properties of breast cancer cells via HBP-coupled HIF-1 signaling.
癌症干细胞(CSCs)是一小群具有自我更新能力的致癌细胞。与许多其他干细胞一样,代谢重编程被认为是癌症干细胞的一个关键特征。然而,关于癌细胞的代谢特征是如何被控制以协调其类癌症干细胞特性的,我们却知之甚少。我们最近证明,透明质酸(HA)的过量产生使可塑性癌细胞能够恢复到干细胞状态。在此,我们采用稳定同位素辅助追踪和质谱分析来阐明过量产生HA的乳腺癌细胞的代谢特征。这些综合方法揭示了己糖胺生物合成途径(HBP)中代谢通量的加速。定量靶向代谢组学也表明向糖酵解的代谢转变,这通过关键糖酵解酶的表达谱得到了验证。己糖胺生物合成途径限速酶谷氨酰胺:果糖-6-磷酸酰胺转移酶1(GFAT1)的强制表达在低氧诱导因子-1α(HIF-1α)积累和糖酵解程序方面类似于HA过量产生的结果,而GFAT1抑制显著降低了过量产生HA的癌细胞中HIF-1α蛋白水平。此外,抑制HBP-HIF-1轴消除了HA驱动的糖酵解增强,并减少了类癌症干细胞亚群。综上所述,我们的结果提供了令人信服的证据,即HA的产生通过HBP偶联的HIF-1信号传导调节乳腺癌细胞的代谢和类癌症干细胞特性。