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TDP-43/HDAC6 axis promoted tumor progression and regulated nutrient deprivation-induced autophagy in glioblastoma

机译:TDP-43 / HDAC6轴促进胶质母细胞瘤的肿瘤进展并调节营养剥夺诱导的自噬

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摘要

Glioblastoma Multiforme (GBM) is a lethal primary brain tumor with poor survival lifespan and dismal outcome. Surgical resection of GBM is greatly limited due to the biological significance of brain, giving rise to tumor relapse in GBM patients. Transactive response DNA binding protein-43 (TDP-43) is a DNA/RNA-binding protein known for causing neurodegenerative diseases through post-translational modification; but little is known about its involvement in cancer development. In this study, we found that nutrient deprivation in GBM cell lines elevated TDP-43 expression by a mechanism of evasion from ubiquitin-dependent proteolytic pathway, and subsequently activated the autophagy process. Exogenous overexpression of TDP-43 consistently activated autophagy and suppressed stress-induced apoptosis. The inhibition of autophagy in TDP-43-overexpressing cells effectively increased the apoptotic population under nutrition shortage. Furthermore, we demonstrated that HDAC6 was involved in the activation of autophagy in TDP-43-overexpressing GBM cell lines. The treatment with SAHA, a universal HDAC inhibitor, significantly reduced TDP-43-mediated anti-apoptotic effect. Additionally, the results of immunohistochemistry showed that TDP-43 and HDAC6 collaborated in GBM-tumor lesions and negatively correlated with the relapse-free survival of GBM patients. Taken together, our results suggest that the TDP-43-HDAC6 signaling axis functions as a stress responsive pathway in GBM tumorigenesis and combats nutrient deprivation stress via activating autophagy, while inhibition of HDAC6 overpowers the pathway and provides a novel therapeutic strategy against GBM.
机译:多形胶质母细胞瘤(GBM)是一种致命的原发性脑肿瘤,生存期较差,预后不良。由于大脑的生物学意义,GBM的手术切除受到极大限制,导致GBM患者的肿瘤复发。 Transactive Response DNA结合蛋白43(TDP-43)是一种DNA / RNA结合蛋白,已知通过翻译后修饰引起神经退行性疾病。但对其参与癌症发展知之甚少。在这项研究中,我们发现GBM细胞系中的营养剥夺通过逃避泛素依赖性蛋白水解途径的机制提高了TDP-43的表达,并随后激活了自噬过程。 TDP-43的外源性过表达持续激活自噬并抑制应激诱导的细胞凋亡。在营养不足的情况下,TDP-43过表达细胞中自噬的抑制作用有效地增加了细胞凋亡。此外,我们证明了HDAC6参与了TDP-43过表达GBM细胞系中自噬的激活。通用HDAC抑制剂SAHA的治疗显着降低了TDP-43介导的抗凋亡作用。此外,免疫组织化学的结果表明,TDP-43和HDAC6在GBM肿瘤病变中协同作用,并与GBM患者的无复发生存负相关。两者合计,我们的结果表明,TDP-43-HDAC6信号转导轴在GBM肿瘤发生中起应激反应途径的作用,并通过激活自噬来对抗营养剥夺应激,而对HDAC6的抑制则使该途径不堪重负,并提供了针对GBM的新型治疗策略。

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