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过表达SOX2的NT2/D1细胞克隆的建立及初步鉴定

Establishment and initial characterization of SOX2-overexpressing NT2/D1 cell clones.

作者信息

Drakulic D, Krstic A, Stevanovic M

机构信息

Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, Serbia.

出版信息

Genet Mol Res. 2012 May 15;11(2):1385-400. doi: 10.4238/2012.May.15.9.

Abstract

SOX2, a universal marker of pluripotent stem cells, is a transcription factor that helps control embryonic development in vertebrates; its expression persists in neural stem/progenitor cells into adulthood. Considering the critical role of the SOX2 transcription factor in the regulation of genes required for self-renewal and pluripotency of stem cells, we developed and characterized SOX2-overexpressing NT2/D1 cell clones. Using Southern blot and semi-quantitative RT-PCR, we confirmed integration and expression of exogenous SOX2 in three NT2/D1 cell clones. Overexpression of the SOX2 gene was detected in two of these clones. SOX2 overexpression in NT2/D1 cell clones resulted in altered expression of key pluripotency genes OCT4 and NANOG. Furthermore, SOX2-overexpressing NT2/D1 cell clones entered into retinoic acid-dependent neural differentiation, even when there was elevated SOX2 expression. After 21 days of induction by retinoic acid, expression of neural markers (neuroD1 and synaptophysin) was higher in induced cell clones than in induced parental cells. The cell clone with SOX2 overexpression had an approximately 1.3-fold higher growth rate compared to parental cells. SOX2 overexpression did not increase the population of cells undergoing apoptosis. Taken together, we developed two SOX2-overexpressing cell clones, with constitutive SOX2 expression after three weeks of retinoic acid treatment. SOX2 overexpression resulted in altered expression of pluripotency-related genes, increased proliferation, and altered expression of neural markers after three weeks of retinoic acid treatment.

摘要

SOX2是多能干细胞的通用标志物,是一种有助于控制脊椎动物胚胎发育的转录因子;其表达在成年后的神经干细胞/祖细胞中持续存在。考虑到SOX2转录因子在干细胞自我更新和多能性所需基因调控中的关键作用,我们构建并鉴定了过表达SOX2的NT2/D1细胞克隆。通过Southern印迹和半定量RT-PCR,我们证实了外源性SOX2在三个NT2/D1细胞克隆中的整合和表达。在其中两个克隆中检测到了SOX2基因的过表达。NT2/D1细胞克隆中SOX2的过表达导致关键多能性基因OCT4和NANOG的表达发生改变。此外,即使SOX2表达升高,过表达SOX2的NT2/D1细胞克隆仍进入视黄酸依赖性神经分化。经视黄酸诱导21天后,诱导细胞克隆中神经标志物(NeuroD1和突触素)的表达高于诱导的亲本细胞。与亲本细胞相比,过表达SOX2的细胞克隆生长速率高约1.3倍。SOX2过表达并未增加凋亡细胞的数量。综上所述,我们构建了两个过表达SOX2的细胞克隆,并在视黄酸处理三周后实现了SOX2的组成性表达。视黄酸处理三周后,SOX2过表达导致多能性相关基因表达改变、增殖增加以及神经标志物表达改变。

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