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Smac mimetic promotes glioblastoma cancer stem-like cell differentiation by activating NF-B-K

机译:Smac模拟物通过激活NF-B-K促进胶质母细胞瘤癌干细胞分化

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Recently, a broader role of inhibitor of apoptosis (IAP) proteins besides their antiapoptotic functions has been described. Therefore, we investigated the effect of non-toxic concentrations of the small-molecule Smac mimetic BV6, which antagonizes IAP proteins, on differentiation of cancer stem-like cells (CSLCs) derived from primary glioblastoma (GBM) specimens. Here, we identify a novel function of BV6 in regulating differentiation of GBM CSLCs by activating NF-B-K. BV6 at non-lethal doses stimulates morphological changes associated with the differentiation of GBM CSLCs. BV6 increases transcriptional activity, mRNA and protein levels of the astrocytic marker GFAP without altering expression of the neuronal marker beta-III-tubulin, indicating that BV6 induces astrocytic differentiation of GBM CSLCs. Molecular studies reveal that BV6 triggers processing of the NF-B-K subunit p100 to p52, nuclear translocation of p52 and p50 and increased NF-B-K DNA-binding. Intriguingly, inhibition of NF-B-K by overexpression of dominant-negative IKB alpha super-repressor (IKB alpha-SR) blocks the BV6-stimulated increase in GFAP and differentiation. Interestingly, this BV6-stimulated differentiation is associated with reduced expression of stemness markers such as CD133, Nanog and Sox2 in GBM CSLCs. In contrast, BV6 does not alter cell morphology, differentiation and expression of stemness markers in non-malignant neural stem cells. Importantly, BV6 treatment reduces clonogenicity of GBM CSLCs in vitro and in vivo, suppresses their tumorigenicity in orthotopic and subcutaneous mouse models and significantly increases the survival of mice. By identifying a novel role of BV6 in promoting differentiation of GBM CSLCs, these findings provide new insights into Smac mimetic-regulated non-apoptotic functions with important implications for targeting GBM CSLCs.
机译:近来,已经描述了除其抗凋亡功能外,凋亡抑制剂(IAP)蛋白的更广泛作用。因此,我们研究了无毒浓度的小分子Smac模拟物BV6(可拮抗IAP蛋白)对源自原发性胶质母细胞瘤(GBM)标本的癌症干样细胞(CSLC)分化的影响。在这里,我们确定了BV6在通过激活NF-B-K调节GBM CSLCs分化中的新功能。非致死剂量的BV6刺激与GBM CSLC分化相关的形态变化。 BV6增加了星形细胞标记物GFAP的转录活性,mRNA和蛋白质水平,而没有改变神经元标记物β-III-微管蛋白的表达,表明BV6诱导了GBM CSLC的星形细胞分化。分子研究表明,BV6触发NF-B-K亚基p100到p52的加工,p52和p50的核易位以及增加的NF-B-K DNA结合。有趣的是,显性阴性IKBα超抑制因子(IKB alpha-SR)的过表达抑制NF-B-K阻止了BV6刺激的GFAP和分化的增加。有趣的是,这种BV6刺激的分化与GBM CSLC中茎标记(例如CD133,Nanog和Sox2)的表达降低有关。相反,BV6不会改变非恶性神经干细胞的细胞形态,分化和干性标志物的表达。重要的是,BV6处理可降低GBM CSLC在体外和体内的克隆形成性,抑制其在原位和皮下小鼠模型中的致瘤性,并显着提高小鼠的存活率。通过鉴定BV6在促进GBM CSLC分化中的新作用,这些发现为Smac模拟调节的非凋亡功能提供了新见解,对靶向GBM CSLC具有重要意义。

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