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首页> 外文期刊>Cell death & disease. >TLX activates MMP-2, promotes self-renewal of tumor spheres in neuroblastoma and correlates with poor patient survival
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TLX activates MMP-2, promotes self-renewal of tumor spheres in neuroblastoma and correlates with poor patient survival

机译:TLX激活MMP-2,促进神经母细胞瘤中肿瘤球的自我更新,并与患者生存不良相关

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摘要

Nuclear orphan receptor TLX ( Drosophila tailless homolog) is essential for the maintenance of neural stem/progenitor cell self-renewal, but its role in neuroblastoma (NB) is not well understood. Here, we show that TLX is essential for the formation of tumor spheres in three different NB cell lines, when grown in neural stem cell media. We demonstrate that the knock down of TLX in IMR-32 cells diminishes its tumor sphere-forming capacity. In tumor spheres, TLX is coexpressed with the neural progenitor markers Nestin, CD133 and Oct-4. In addition, TLX is coexpressed with the migratory neural progenitor markers CD15 and matrix metalloproteinase-2 (MMP-2) in xenografts of primary NB cells from patients. Subsequently, we show the effect of TLX on the proliferative, invasive and migratory properties of IMR-32 cells. We attribute this to the recruitment of TLX to both MMP-2 and Oct-4 gene promoters, which resulted in the respective gene activation. In support of our findings, we found that TLX expression was high in NB patient tissues when compared with normal peripheral nervous system tissues. Further, the Kaplan – Meier estimator indicated a negative correlation between TLX expression and survival in 88 NB patients. Therefore, our results point at TLX being a crucial player in progression of NB, by promoting self-renewal of NB tumor-initiating cells and altering their migratory and invasive properties.
机译:核孤儿受体TLX(果蝇无尾同源物)对于维持神经干细胞/祖细胞的自我更新至关重要,但其在神经母细胞瘤(NB)中的作用尚不清楚。在这里,我们显示,当在神经干细胞培养基中生长时,TLX对于在三种不同的NB细胞系中形成肿瘤球至关重要。我们证明在IMR-32细胞中TLX的敲低减少了其肿瘤球形成能力。在肿瘤领域,TLX与神经祖细胞标记物Nestin,CD133和Oct-4共表达。此外,TLX与迁移性神经祖细胞标记CD15和基质金属蛋白酶2(MMP-2)在患者原代NB细胞的异种移植物中共表达。随后,我们展示了TLX对IMR-32细胞的增殖,侵袭和迁移特性的影响。我们将此归因于TLX募集到MMP-2和Oct-4基因启动子,这导致了各自的基因激活。为了支持我们的发现,我们发现与正常的外周神经系统组织相比,NB患者组织中的TLX表达高。此外,Kaplan – Meier估计量表明88例NB患者的TLX表达与生存率呈负相关。因此,我们的结果表明,TLX通过促进NB肿瘤起始细胞的自我更新并改变其迁移和侵袭特性,成为NB进展的关键因素。

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