Lee JunSung, Hoxha Edlira, Song Hae-Ri
Department of Neurosurgery, New York University, School of Medicine, New York, NY, USA.
Department of Neurology, New York University, School of Medicine, New York, NY, USA.
Neuro Oncol. 2017 Apr 1;19(4):524-534. doi: 10.1093/neuonc/now233.
The nuclear factor I-A (NFIA) transcription factor promotes glioma growth and inhibits apoptosis in glioblastoma (GBM) cells. Here we report that the NFIA pro-survival effect in GBM is mediated in part via a novel NFIA-nuclear factor-kappaB (NFκB) p65 feed-forward loop.
We examined effects of gain- and loss-of-function manipulations of NFIA and NFκB p65 on each other's transcription, cell growth, apoptosis and sensitivity to chemotherapy in patient-derived GBM cells and established GBM cell lines.
NFIA enhanced apoptosis evasion by activating NFκB p65 and its downstream anti-apoptotic factors tumor necrosis factor receptor-associated factor 1 (TRAF1) and cellular inhibitor of apoptosis proteins (cIAPs). Induction of NFκB by NFIA was required to protect cells from apoptosis, and inhibition of NFκB effectively reversed the NFIA anti-apoptotic effect. Conversely, NFIA knockdown decreased expression of NFκB and anti-apoptotic genes TRAF1 and cIAPs, and increased baseline apoptosis. NFIA positively regulated NFκB transcription and NFκB protein level. Interestingly, NFκB also activated the NFIA promoter and increased NFIA level, and knockdown of NFIA was sufficient to attenuate the NFκB pro-survival effect, suggesting a reciprocal regulation between NFIA and NFκB in governing GBM cell survival. Supporting this, NFIA and NFκB expression levels were highly correlated in human GBM and patient-derived GBM cells.
These data define a previously unknown NFIA-NFκB feed-forward regulation that may contribute to GBM cell survival.
核因子I-A(NFIA)转录因子促进胶质瘤生长并抑制胶质母细胞瘤(GBM)细胞的凋亡。在此我们报告,GBM中NFIA的促生存作用部分是通过一种新的NFIA-核因子-κB(NFκB)p65前馈环介导的。
我们检测了NFIA和NFκB p65功能获得和功能缺失操作对彼此转录、细胞生长、凋亡以及患者来源的GBM细胞和已建立的GBM细胞系对化疗敏感性的影响。
NFIA通过激活NFκB p65及其下游抗凋亡因子肿瘤坏死因子受体相关因子1(TRAF1)和细胞凋亡抑制蛋白(cIAPs)增强凋亡逃避。NFIA诱导NFκB对于保护细胞免于凋亡是必需的,抑制NFκB可有效逆转NFIA的抗凋亡作用。相反,敲低NFIA可降低NFκB以及抗凋亡基因TRAF1和cIAPs的表达,并增加基础凋亡。NFIA正向调节NFκB转录和NFκB蛋白水平。有趣的是,NFκB也激活NFIA启动子并增加NFIA水平,敲低NFIA足以减弱NFκB的促生存作用,提示在调控GBM细胞存活方面NFIA和NFκB之间存在相互调节。支持这一点的是,NFIA和NFκB表达水平在人GBM和患者来源的GBM细胞中高度相关。
这些数据定义了一种先前未知的NFIA-NFκB前馈调节,其可能有助于GBM细胞存活。