Department of Otorhinolaryngology Head and Neck Surgery, The Second Xiangya Hospital, Central South University, Changsha, Hunan, China.
Department of Head and Neck Surgery, Hunan Cancer Hospital and The Affiliated Cancer Hospital of Xiangya School of Medicine, Central South University, Changsha, Hunan, China.
J Cell Physiol. 2019 Nov;234(11):19130-19140. doi: 10.1002/jcp.28692. Epub 2019 Jun 11.
Aerobic glycolysis (the Warburg effect) is a robust metabolic hallmark of most tumors, including oral squamous cell carcinoma (OSCC). Glucose transporter 1 (GLUT1), a major glucose transporter regulating the glucose uptake, is upregulated in OSCC and participated in the cell glycolysis of OSCC. The deregulation and function of noncoding RNAs in cancers have been widely reported. Reportedly, hsa_circular RNA (circRNA)_100290 (circ_SLC30A7) is significantly upregulated (fold change = 6.91, p < 0.0000001) in OSCC. According to online tools prediction (miRWalk, miRanda, and Targetscan), miR-378a could simultaneously target circRNA_100290 and GLUT1. Herein, the expression of circRNA_100290 and GLUT1 remarkably increased in oral tumor tissue specimens and cells. In OSCC cell lines, cell proliferation and glycolysis could be remarkably downregulated by circRNA_100290 silence, which could be rescued by GLUT1 overexpression. Conversely, miR-378a expression could be remarkably inhibited in tumor tissue specimens and cells. The effect of miR-378a overexpression on OSCC cells was similar to those of circRNA_100290 silence. miR-378a directly bound to circRNA_100290 and GLUT1 3'-untranslated region, circRNA_100290 could remarkably relieve miR-378a-induced inhibition on GLUT1 via acting as a competing endogenous RNA (ceRNA). miR-378a inhibition remarkably attenuated the effect of circRNA_100290 silence on cell proliferation and glycolysis in OSCC cell lines. In summary, circRNA_100290 serves as a ceRNA to counteract miR-378a-mediated GLUT1 suppression, thus promoting glycolysis and cell proliferation in OSCC. We provide a reliable experimental basis for understanding the mechanism of cell growth and glycolysis deregulation in OSCC.
有氧糖酵解(瓦博格效应)是大多数肿瘤的一种强有力的代谢标志,包括口腔鳞状细胞癌(OSCC)。葡萄糖转运蛋白 1(GLUT1)是调节葡萄糖摄取的主要葡萄糖转运蛋白,在 OSCC 中上调,并参与 OSCC 的细胞糖酵解。非编码 RNA 在癌症中的失调和功能已被广泛报道。据报道,hsa_环状 RNA(circRNA)_100290(circ_SLC30A7)在 OSCC 中显著上调(倍数变化=6.91,p<0.0000001)。根据在线工具预测(miRWalk、miRanda 和 Targetscan),miR-378a 可以同时靶向 circRNA_100290 和 GLUT1。在此,circRNA_100290 和 GLUT1 的表达在口腔肿瘤组织标本和细胞中显著增加。在 OSCC 细胞系中,circRNA_100290 沉默可显著下调细胞增殖和糖酵解,而过表达 GLUT1 可挽救这一作用。相反,miR-378a 在肿瘤组织标本和细胞中的表达可显著抑制。miR-378a 过表达对 OSCC 细胞的影响与 circRNA_100290 沉默相似。miR-378a 直接结合 circRNA_100290 和 GLUT1 3'-非翻译区,circRNA_100290 可通过作为竞争性内源性 RNA(ceRNA)显著缓解 miR-378a 对 GLUT1 的抑制作用。miR-378a 抑制可显著减弱 circRNA_100290 沉默对 OSCC 细胞系中细胞增殖和糖酵解的影响。总之,circRNA_100290 作为 ceRNA 拮抗 miR-378a 介导的 GLUT1 抑制,从而促进 OSCC 中的糖酵解和细胞增殖。我们为理解 OSCC 中细胞生长和糖酵解失调的机制提供了可靠的实验依据。