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首页> 外文期刊>Cell biology international. >Simultaneous targeted inhibition of Sox2‐Oct4 transcription factors using decoy oligodeoxynucleotides to repress stemness properties in mouse embryonic stem cells
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Simultaneous targeted inhibition of Sox2‐Oct4 transcription factors using decoy oligodeoxynucleotides to repress stemness properties in mouse embryonic stem cells

机译:使用诱饵寡聚寡核苷酸同时靶向抑制SOX2-OCT4转录因子,在小鼠胚胎干细胞中抑制茎秆性能

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摘要

Abstract Transcriptional master regulators like Sox2 and Oct4, which are expressed in various human tumors, have been shown to cause tumor growth promotion as well as epithelial dysplasia by means of interfering with progenitor cell differentiation. In order to investigate the potential of Sox2‐Oct4 transcription factor decoy (TFD) strategy for differentiation therapy, mouse embryonic stem cells (mESCs) were used in this study as a model of cancer stem cells (CSCs). Sox2‐Oct4 complex decoy ODNs (cd‐ODNs) were designed according to their elements in the promoter region of Sox2 gene. DNA–protein interactions between decoy ODNs and their corresponding proteins were examined by electrophoretic mobility shift assay (EMSA). Then, decoy and scrambled ODNs were transfected into mESCs with lipofectamine under 2 inhibitors (2i) conditions. Fluorescence and confocal microscopy, cell viability, cell cycle and apoptosis analysis, alkaline phosphatase, embryoid body formation assay, and real‐time PCR were used to conduct further investigations. EMSA data showed that Sox2‐Oct4 decoy ODNs bound specifically to their recombinant proteins. The results revealed that the synthesized complex decoy can concomitantly target Sox2 and Oct4, which subsequently represses the stemness properties of mESCs compared to controls through decreasing cell viability, arresting cell cycle in G 0 /G 1 phases, inducing apoptosis, and modulating differentiation in mESCs despite the presence of 2i/LIF in cell culture. While cd‐ODN strategy seems to offer great promise for cancer therapy, further studies are still required to put this powerful investigative tool in practice for a wide range of human cancers.
机译:摘要已经显示出在各种人类肿瘤中表达的SOX2和OCT4等转录母稳压因子,通过干扰祖细胞分化来引起肿瘤生长促进以及上皮性发育不良。为了探讨SOX2-OCT4转录因子诱饵(TFD)策略对分化治疗的潜力,在本研究中使用小鼠胚胎干细胞(MESCS)作为癌症干细胞(CSC)的模型。 SOX2-OCT4复杂诱饵ODN(CD-ODNS)根据SOx2基因的启动子区域中的它们的元素设计。通过电泳迁移率移位测定(EMSA)检查诱饵ODN和它们相应的蛋白质之间的DNA-蛋白质相互作用。然后,将诱饵和加扰ODN转染到MESC中,用Lipofectamine在2个抑制剂(2I)条件下。荧光和共聚焦显微镜,细胞活力,细胞周期和凋亡分析,碱性磷酸酶,胚状体形成测定和实时PCR进行进一步研究。 EMSA数据显示SOX2-OCT4诱饵ODN专门针对其重组蛋白结合。结果表明,合成的复合体诱饵可以伴随着靶向SOX2和OCT4,其随后通过降低细胞活力,在G 0 / G 1相中的诱导细胞凋亡和调节分化中的诱导细胞循环和调节鼠标中的分化和调节分化的对照组的靶向SOx2和OCT4。尽管存在2I / LiF细胞培养。虽然CD-ODN策略似乎为癌症治疗提供了很大的承诺,但仍然需要进一步的研究来将这种强大的调查工具在实践中施加各种人类癌症。

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