Department of Emergency and Trauma Surgery, First Affiliated Hospital of Hainan Medical College, Haikou, Hainan.
Department of Orthopedics, Kunming Third People's Hospital, Kunming, Yunnan.
Anticancer Drugs. 2024 Nov 1;35(10):893-901. doi: 10.1097/CAD.0000000000001643. Epub 2024 Jul 15.
The current treatment for osteosarcoma (OS) is based on surgery combined with systemic chemotherapy, however, gene therapy has been hypothesized to improve patient survival rates. The density-enhanced protein domain 1 protein (DEPDC1) functions as a crucial determinant in the advancement of OS, which is highly expressed in OS cells. The current study was designed to delve into the effect and mechanism of DEPDC1 and phosphotyrosine-picked threonine tyrosine kinase (TTK) in OS. The expression of DEPDC1 and TTK in OS cells was detected by western blotting. Furthermore, the assessment of glycolysis encompassed the quantification of extracellular acidification rate, glucose uptake rate, lactate concentration, and the expression of glucose transporter 1, hexokinase 2, and pyruvate kinase M2. Finally, the functions of DEPDC1 and TTK in autophagy and ras-extracellular signal-regulated kinase signaling were determined by western blotting after interfering with DEPDC1 in SaOS-2 cells. The results revealed that DEPDC1 and TTK were upregulated in OS cell lines and interfering with DEPDC1 inhibited glycolysis and autophagy in OS cells. Furthermore, the STRING database suggested that DEPDC1 and TTK perform targeted binding. Notably, the results of the present study revealed that DEPDC1 upregulated RAS expression through TTK and enhanced ERK activity, thereby affecting glycolysis and autophagy in OS cells. Collectively, the present investigation demonstrated that DEPDC1 affected autophagy-dependent glycolysis levels of OS cells by regulating RAS/ERK signaling through TTK.
目前,骨肉瘤(OS)的治疗基于手术联合全身化疗,但基因治疗被认为可以提高患者的生存率。密度增强蛋白结构域 1 蛋白(DEPDC1)是 OS 进展的关键决定因素,在 OS 细胞中高度表达。本研究旨在深入研究 DEPDC1 和磷酸酪氨酸选择的苏氨酸激酶(TTK)在 OS 中的作用和机制。通过 Western blot 检测 OS 细胞中 DEPDC1 和 TTK 的表达。此外,通过检测细胞外酸化率、葡萄糖摄取率、乳酸浓度以及葡萄糖转运蛋白 1、己糖激酶 2 和丙酮酸激酶 M2 的表达来评估糖酵解。最后,通过干扰 SaOS-2 细胞中的 DEPDC1,通过 Western blot 确定 DEPDC1 和 TTK 在自噬和 ras 细胞外信号调节激酶信号中的功能。结果表明,DEPDC1 和 TTK 在 OS 细胞系中上调,干扰 DEPDC1 抑制 OS 细胞的糖酵解和自噬。此外,STRING 数据库表明 DEPDC1 和 TTK 具有靶向结合。值得注意的是,本研究的结果表明,DEPDC1 通过 TTK 上调 RAS 表达并增强 ERK 活性,从而影响 OS 细胞的糖酵解和自噬。总之,本研究表明,DEPDC1 通过 TTK 调节 RAS/ERK 信号影响 OS 细胞自噬依赖性糖酵解水平。