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SPP1转录调控的胚胎型在胶质母细胞瘤中被重新激活。

The embryonic type of SPP1 transcriptional regulation is re-activated in glioblastoma.

作者信息

Kijewska Magdalena, Kocyk Marta, Kloss Michal, Stepniak Karolina, Korwek Zbigniew, Polakowska Renata, Dabrowski Michal, Gieryng Anna, Wojtas Bartosz, Ciechomska Iwona A, Kaminska Bozena

机构信息

Laboratory of Molecular Neurobiology, The Nencki Institute of Experimental Biology of the Polish Academy of Sciences, Warsaw, Poland.

Laboratory of Molecular Bases of Aging, The Nencki Institute of Experimental Biology of Polish Academy of Sciences, Warsaw, Poland.

出版信息

Oncotarget. 2017 Mar 7;8(10):16340-16355. doi: 10.18632/oncotarget.14092.

Abstract

Osteopontin (SPP1, a secreted phosphoprotein 1) is primarily involved in immune responses, tissue remodelling and biomineralization. However, it is also overexpressed in many cancers and regulates tumour progression by increasing migration, invasion and cancer stem cell self-renewal. Mechanisms of SPP1 overexpression in gliomas are poorly understood. We demonstrate overexpression of two out of five SPP1 isoforms in glioblastoma (GBM) and differential isoform expression in glioma cell lines. Up-regulated SPP1 expression is associated with binding of the GLI1 transcription factor to the promoter and OCT4 (octamer-binding transcription factor 4) to the first SPP1 intron of the SPP1 gene in human glioma cells but not in non-transformed astrocytes. GLI1 knockdown reduced SPP1 mRNA and protein levels in glioma cells. GLI1 and OCT4 are known regulators of stem cell pluripotency. GBMs contain rare cells that express stem cell markers and display ability to self-renew. We reveal that SPP1 is overexpressed in glioma initiating cells defined by high rhodamine 123 efflux, sphere forming capacity and stemness marker expression. Forced differentiation of human glioma spheres reduced SPP1 expression. Knockdown of SPP1, GLI1 or CD44 with siRNAs diminished sphere formation. C6 glioma cells stably depleted of Spp1 displayed reduced sphere forming capacity and downregulated stemness marker expression. Overexpression of the wild type Spp1, but not Spp1 lacking a Cd44 binding domain, rescued cell ability to form spheres. Our findings show re-activation of the embryonic-type transcriptional regulation of SPP1 in malignant gliomas and point to the importance of SPP1-CD44 interactions in self-renewal and pluripotency glioma initiating cells.

摘要

骨桥蛋白(SPP1,一种分泌型磷蛋白1)主要参与免疫反应、组织重塑和生物矿化。然而,它在许多癌症中也过度表达,并通过增加迁移、侵袭和癌症干细胞自我更新来调节肿瘤进展。胶质瘤中SPP1过度表达的机制尚不清楚。我们证明了胶质母细胞瘤(GBM)中五种SPP1亚型中的两种过度表达,以及胶质瘤细胞系中不同亚型的表达差异。在人胶质瘤细胞而非未转化的星形胶质细胞中,上调的SPP1表达与GLI1转录因子与启动子的结合以及OCT4(八聚体结合转录因子4)与SPP1基因的第一个SPP1内含子的结合有关。敲低GLI1可降低胶质瘤细胞中SPP1的mRNA和蛋白水平。GLI1和OCT4是已知的干细胞多能性调节因子。GBM中含有表达干细胞标志物并具有自我更新能力的罕见细胞。我们发现,在由高罗丹明123外排、成球能力和干性标志物表达所定义的胶质瘤起始细胞中,SPP1过度表达。人胶质瘤球体的强制分化降低了SPP1表达。用小干扰RNA敲低SPP1、GLI1或CD44可减少球体形成。稳定缺失Spp1的C6胶质瘤细胞表现出成球能力降低和干性标志物表达下调。野生型Spp1的过表达,而非缺乏Cd44结合域的Spp1的过表达,挽救了细胞形成球体的能力。我们的研究结果表明,恶性胶质瘤中SPP1的胚胎型转录调控被重新激活,并指出SPP1 - CD44相互作用在胶质瘤起始细胞的自我更新和多能性中的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0499/5369967/5ced961db887/oncotarget-08-16340-g001.jpg

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