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XPC Promotes Pluripotency of Human Dental Pulp Cells through Regulation of Oct-4/Sox2/c-Myc

机译:XPC通过调节Oct-4 / Sox2 / c-Myc促进人牙髓细胞的多能性

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摘要

Introduction. Xeroderma pigmentosum group C (XPC), essential component of multisubunit stem cell coactivator complex (SCC), functions as the critical factor modulating pluripotency and genome integrity through interaction with Oct-4/Sox2. However, its specific role in regulating pluripotency and multilineage differentiation of human dental pulp cells (DPCs) remains unknown. Methods. To elucidate the functional role XPC played in pluripotency and multilineage differentiation of DPCs, expressions of XPC in DPCs with long-term culture were examined by real-time PCR and western blot. DPCs were transfected with lentiviral-mediated human XPC gene; then transfection rate was investigated by real-time PCR and western blot. Cell cycle, apoptosis, proliferation, senescence, multilineage differentiation, and expression of Oct-4/Sox2/c-Myc in transfected DPCs were examined. Results. XPC, Oct-4, Sox2, and c-Myc were downregulated at P7 compared with P3 in DPCs with long-term culture. XPC genes were upregulated in DPCs at P2 after transfection and maintained high expression level at P3 and P7. Cell proliferation, PI value, and telomerase activity were enhanced, whereas apoptosis was suppressed in transfected DPCs. Oct-4/Sox2/c-Myc were significantly upregulated, and multilineage differentiation in DPCs with XPC overexpression was enhanced after transfection. Conclusions. XPC plays an essential role in the modulation of pluripotency and multilineage differentiation of DPCs through regulation of Oct-4/Sox2/c-Myc.
机译:介绍。色素干性干燥菌C组(XPC)是多亚基干细胞共激活复合物(SCC)的重要组成部分,通过与Oct-4 / Sox2的相互作用,成为调节多能性和基因组完整性的关键因素。然而,其在调节人牙髓细胞(DPC)的多能性和多系分化中的特定作用仍然未知。方法。为了阐明XPC在DPC的多能性和多系分化中所发挥的功能,通过实时PCR和Western blot检测XPC在长期培养的DPC中的表达。用慢病毒介导的人XPC基因转染DPC;然后通过实时荧光定量PCR和western blot研究转染率。检查了转染的DPC中的细胞周期,凋亡,增殖,衰老,多系分化和Oct-4 / Sox2 / c-Myc的表达。结果。与长期培养的DPC相比,与P3相比,PPC的XPC,Oct-4,Sox2和c-Myc在P7下调。转染后,PPC中的XPC基因在DPC中上调,并在P3和P7处保持高表达水平。细胞增殖,PI值和端粒酶活性得到增强,而在转染的DPC中细胞凋亡受到抑制。转染后,Oct-4 / Sox2 / c-Myc显着上调,并且具有XPC过表达的DPC中的多谱系分化得到增强。结论。 XPC通过调节Oct-4 / Sox2 / c-Myc在调节DPC的多能性和多系分化中起重要作用。

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