Department of Biochemistry and Molecular Biology, Kunming Medical University, No. 1168 Yuhua Road, Chenggong District, Kunming, 650500, Yunnan, China.
PET-CT Center, Yunnan Tumor Hospital, Third Affiliated Hospital of Kunming Medical University, Kunming, China.
J Cancer Res Clin Oncol. 2019 Mar;145(3):637-652. doi: 10.1007/s00432-018-2820-4. Epub 2018 Dec 19.
Clinical outcomes for advanced malignant melanoma (MM) are often poor due to tumor invasiveness, metastasis, recurrence, and multidrug resistance.
We investigated whether apoptosis, cell cycle regulation, oxidative status, and redox balance were altered by changes in the expression of the long noncoding RNA, growth arrest-specific transcript 5 (GAS5), in MM cells.
Analysis of clinical samples from MM patients showed that the rate of reduced GAS5 expression, relative to that in adjacent noncancerous tissues, was significantly lower for tumors from patients with advanced disease (76.6%, P < 0.001), as evidenced by larger tumor size, higher TNM stage, and higher incidences of ulceration and metastasis (P < 0.001 for all). Cell culture experiments showed that siRNA-mediated knockdown of GAS5 increased the viability of A375-GAS5si cells. Flow cytometry and western blotting showed that GAS5 knockdown increased MM cell proliferation by inducing G1/S cell cycle progression through increases in Cyclin D1, CDK4, and p27 expression (P < 0.05 for all) and by inhibiting apoptosis through an increase in Bcl-2 expression (P < 0.001). Knockdown of GAS5 also increased levels of superoxide anion (P < 0.01), NADP(P < 0.001), and oxidized glutathiones (P < 0.01) through increases in NOX4 expression (P < 0.001), G6PD expression (P < 0.01), and NOX activity (P < 0.05), and RNA co-immunoprecipitation showed that GAS5 induced these changes through a physical interaction between GAS5 and the G6PD protein.
Our findings show GAS5 contributes to regulation of the apoptosis, cell cycle, homeostasis of reactive oxygen species, and redox balance in MM cells, and suggest that reduced GAS5 expression contributes to disease progression in MM patients.
由于肿瘤侵袭、转移、复发和多药耐药,晚期恶性黑色素瘤(MM)的临床预后通常较差。
我们研究了在 MM 细胞中,长非编码 RNA(lncRNA)生长停滞特异性转录物 5(GAS5)表达的变化是否改变了细胞凋亡、细胞周期调控、氧化状态和氧化还原平衡。
对 MM 患者的临床样本进行分析显示,与相邻非癌组织相比,疾病进展患者肿瘤中 GAS5 表达减少的比例明显较低(76.6%,P<0.001),这表现为肿瘤体积较大、TNM 分期较高以及溃疡和转移发生率较高(所有 P<0.001)。细胞培养实验表明,siRNA 介导的 GAS5 敲低增加了 A375-GAS5si 细胞的活力。流式细胞术和 Western blot 显示,GAS5 敲低通过增加细胞周期蛋白 D1、CDK4 和 p27 的表达(所有 P<0.05)诱导 G1/S 细胞周期进程,从而促进 MM 细胞增殖,并通过增加 Bcl-2 的表达(P<0.001)抑制细胞凋亡。GAS5 敲低还通过增加 NOX4 表达(P<0.001)、G6PD 表达(P<0.01)和 NOX 活性(P<0.05)来增加超氧阴离子(P<0.01)、NADP(P<0.001)和氧化型谷胱甘肽(P<0.01)的水平,RNA 免疫共沉淀表明,GAS5 通过 GAS5 与 G6PD 蛋白之间的物理相互作用诱导这些变化。
我们的研究结果表明,GAS5 有助于调节 MM 细胞的细胞凋亡、细胞周期、活性氧稳态和氧化还原平衡,并表明 GAS5 表达减少可能导致 MM 患者疾病进展。