机构:[1]Chinese Acad Med Sci, State Key Lab Med Mol Biol, Dept Mol Biol & Biochem,Sch Basic Med,Peking Unio, Inst Basic Med Sci,Med Primate Res Ctr,Neurosci C, Beijing, Peoples R China;[2]Beijing Tiantan Hosp, Dept Neurosurg, Beijing, Peoples R China;重点科室诊疗科室神经外科神经外科首都医科大学附属天坛医院[3]Chinese Acad Med Sci, State Key Lab Med Mol Biol, Dept Mol Biol & Biochem, Inst Basic Med Sci,Med Primate Res Ctr,Neurosci C, Beijing 100005, Peoples R China;[4]Peking Union Med Coll, Beijing 100005, Peoples R China
Polycomb group (PcG) proteins play an important role in development and stem cell maintenance, and their dysregulation have been closely linked to oncogenesis and cancer stem cell phenotypes. Here, we found that nervous system polycomb 1 (NSPc1) was highly expressed in stem cell-like glioma cells (SLCs). Knockdown of NSPc1 in SLCs resulted in impaired neurosphere formation and self-renewal abilities, down-regulated expression of stemness markers such as NESTIN, CD133 and SOX2, and decreased capacity to propagate subcutaneous xenografts. In contrast, glioma cells overexpressing NSPc1 exhibited a stem cell-like phenotype, upregulated expression of stemness markers NESTIN, CD133 and SOX2, and an enhanced capacity to propagate subcutaneous xenografts. Furthermore, we identified that NSPc1 epigenetically repressed the expression of retinol dehydrogenase 16 (RDH16) by directly binding to a region upstream (-1073 to -823) of the RDH16 promoter. Next, we confirmed that RDH16 is a stemness suppressor that partially rescues SLCs from the NSPc1-induced increase in neurosphere formation. Finally, we showed that ATRA partly reversed the NSPc1-induced stemness enhancement in SLCs, through mechanisms correlated with an ATRA-dependent decrease in the expression of NSPc1. Thus, our results demonstrate that NSPc1 promotes cancer stem cell self-renewal by repressing the synthesis of ATRA via targeting RDH16 and may provide novel targets for glioma treatment in the future.
基金:
National Key Research and Development Plan [2016YFC0902502, 2016YFA0100702]; 973 projectNational Basic Research Program of China [2013CB531304]; National Sciences Foundation of ChinaNational Natural Science Foundation of China [31671316, 31301152, 31370789, 31670789]; CAMS Innovation Fund for Medical Sciences (CIFMS) [2016-I2M-1-001, 2016-I2M-2-001, 2016-I2M-1-004]
第一作者机构:[1]Chinese Acad Med Sci, State Key Lab Med Mol Biol, Dept Mol Biol & Biochem,Sch Basic Med,Peking Unio, Inst Basic Med Sci,Med Primate Res Ctr,Neurosci C, Beijing, Peoples R China;
通讯作者:
通讯机构:[1]Chinese Acad Med Sci, State Key Lab Med Mol Biol, Dept Mol Biol & Biochem,Sch Basic Med,Peking Unio, Inst Basic Med Sci,Med Primate Res Ctr,Neurosci C, Beijing, Peoples R China;[3]Chinese Acad Med Sci, State Key Lab Med Mol Biol, Dept Mol Biol & Biochem, Inst Basic Med Sci,Med Primate Res Ctr,Neurosci C, Beijing 100005, Peoples R China;[4]Peking Union Med Coll, Beijing 100005, Peoples R China
推荐引用方式(GB/T 7714):
Hu P-S,Xia Q-S,Wu F.,et al.NSPc1 promotes cancer stem cell self-renewal by repressing the synthesis of all-trans retinoic acid via targeting RDH16 in malignant glioma[J].ONCOGENE.2017,36(33):4706-4718.doi:10.1038/onc.2017.34.
APA:
Hu, P-S,Xia, Q-S,Wu, F.,Li, D-K,Qi, Y-J...&Peng, X-Z.(2017).NSPc1 promotes cancer stem cell self-renewal by repressing the synthesis of all-trans retinoic acid via targeting RDH16 in malignant glioma.ONCOGENE,36,(33)
MLA:
Hu, P-S,et al."NSPc1 promotes cancer stem cell self-renewal by repressing the synthesis of all-trans retinoic acid via targeting RDH16 in malignant glioma".ONCOGENE 36..33(2017):4706-4718