机构:[1]Department of Neurosurgery, Second Affiliated Hospital of Harbin Medical University, Harbin 150086, China[2]Beijing Neurosurgical Institute, Capital Medical University, Beijing, China研究所北京市神经外科研究所首都医科大学附属天坛医院[3]Neuroscience Institute, Heilongjiang Academy of Medical Sciences, Harbin 150086, China
Glioblastoma (GBM) stem cells (GSCs) have been found to be the main cause of malignant GBM progression. It has also been found that Quaking homolog (QKI) plays a predominant role in driving GBM development. Here, we aimed to asses the role of QKI in maintaining GSC stemness and inducing the invasiveness of GBM cells.
Public databases were used to assess the expression of QKI and its correlation with stemness markers in primary GBMs. The CRISPR-Cas9 technology was used to generate QKI knockout GBM cells, and RNA immunoprecipitation was used to assess QKI-GLI1 protein-mRNA interactions. In addition, in vitro and in vivo GBM cell proliferation, migration, xenografting and neurosphere formation assays were performed.
Using public GBM databases, QKI was identified as a potential GSC regulator. We found that QKI could inhibit stem-like cell (SLC) stemness and prolong the survival of xenografted mice. Mechanistically, we found that QKI knockout increased the GLI Family Zinc Finger 1 (GLI1) mRNA level, which is essential for maintaining the self-renewal ability of GSCs. In addition, we found that QKI knockout activated the Hedgehog signaling pathway via Tra-2 and GLI response element (TGE)-specific GLI1 mRNA disruption.
Our data indicate that upregulation of GLI1 induced by QKI deficiency maintains GSC stemness and enhances the invasiveness of GBM cells, thereby hinting at new options for the treatment of GBM.
第一作者机构:[1]Department of Neurosurgery, Second Affiliated Hospital of Harbin Medical University, Harbin 150086, China[2]Beijing Neurosurgical Institute, Capital Medical University, Beijing, China[3]Neuroscience Institute, Heilongjiang Academy of Medical Sciences, Harbin 150086, China
共同第一作者:
通讯作者:
通讯机构:[1]Department of Neurosurgery, Second Affiliated Hospital of Harbin Medical University, Harbin 150086, China[3]Neuroscience Institute, Heilongjiang Academy of Medical Sciences, Harbin 150086, China
推荐引用方式(GB/T 7714):
Han Bo,Wang Ruijia,Chen Yongjie,et al.QKI deficiency maintains glioma stem cell stemness by activating the SHH/GLI1 signaling pathway.[J].CELLULAR ONCOLOGY.2019,doi:10.1007/s13402-019-00463-x.
APA:
Han Bo,Wang Ruijia,Chen Yongjie,Meng Xiangqi,Wu Pengfei...&Cai Jinquan.(2019).QKI deficiency maintains glioma stem cell stemness by activating the SHH/GLI1 signaling pathway..CELLULAR ONCOLOGY,,
MLA:
Han Bo,et al."QKI deficiency maintains glioma stem cell stemness by activating the SHH/GLI1 signaling pathway.".CELLULAR ONCOLOGY .(2019)