Guo Shenghu, Zhang Lei, Zhang Yuehua, Wu Zheng, He Dongwei, Li Xing, Wang Zhiyu
Department of Immuno-Oncology, The Fourth Hospital of Hebei Medical University, Shijiazhuang, Hebei 050011, P. R. China.
Aging (Albany NY). 2019 Sep 18;11(18):7553-7569. doi: 10.18632/aging.102271.
Long non-coding RNA taurine up-regulated gene 1 (TUG1) emerges as new players in gene regulation in several cancers; however, its mechanism of action in non-small cell lung cancer (NSCLC) has not been well-studied. Herein, we determined expression pattern of TUG1 in NSCLC and further identified its effect on the chemosensitivity of NSCLC. Low expression of TUG1 was found in NSCLC tissues obtained from non-responders to platinum-based chemotherapy and reflected poor overall survival. TUG1 overexpression was shown to inhibit cell proliferation, migration, invasion, but facilitate apoptosis and autophagy in NSCLC cells resistant to cisplatin (DDP). Smaller size of tumor xenografts of DDP resistant NSCLC cells in the presence of TUG1 demonstrated enhancement of chemosensitivity by TUG1 . High expression of miR-221 and low expression of PTEN were determined in cancer tissues obtained from non-responders to platinum-based chemotherapy and reflected poor overall survival. TUG1 inhibited miR-221 that targeted PTEN, as evidenced by an elevated expression of PTEN in the presence of miR-221 or the absence of TUG1. Our present study reveals a model of enhancement of chemosensitivity that consists of TUG1, miR-221 and PTEN. Modulation of their levels may offer a new approach for improving anti-tumor efficacy for chemotherapeutic agents in NSCLC.
长链非编码RNA牛磺酸上调基因1(TUG1)在多种癌症的基因调控中成为新的参与者;然而,其在非小细胞肺癌(NSCLC)中的作用机制尚未得到充分研究。在此,我们确定了TUG1在NSCLC中的表达模式,并进一步确定了其对NSCLC化疗敏感性的影响。在对铂类化疗无反应者的NSCLC组织中发现TUG1低表达,这反映了总体生存率较差。TUG1过表达被证明可抑制顺铂(DDP)耐药的NSCLC细胞的增殖、迁移和侵袭,但促进其凋亡和自噬。在存在TUG1的情况下,DDP耐药NSCLC细胞的肿瘤异种移植瘤体积较小,表明TUG1增强了化疗敏感性。在对铂类化疗无反应者的癌组织中检测到miR-221高表达和PTEN低表达,这反映了总体生存率较差。TUG1抑制靶向PTEN的miR-221,这在存在miR-221或不存在TUG1的情况下PTEN表达升高得到证实。我们目前的研究揭示了一种由TUG1、miR-221和PTEN组成的化疗敏感性增强模型。调节它们的水平可能为提高NSCLC化疗药物的抗肿瘤疗效提供一种新方法。