Farshchian Moein, Matin Maryam Moghaddam, Bahrami Monireh, Geerts Dirk, Dastpak Mahtab, Shahriyari Mina, Tajeran Massoumeh, Mirahmadi Mahdi, Bahrami Ahmad Reza
Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran; Cell and Molecular Biotechnology Research Group, Institute of Biotechnology, Ferdowsi University of Mashhad, Mashhad, Iran.
Department of Biology, Faculty of Science, Ferdowsi University of Mashhad, Mashhad, Iran; Stem Cell and Regenerative Medicine Research Group, Academic Center for Education, Culture and Research (ACECR), Khorasan Razavi Branch, Mashhad, Iran.
Biochem Biophys Res Commun. 2016 Nov 25;480(4):635-640. doi: 10.1016/j.bbrc.2016.10.108. Epub 2016 Oct 26.
Germline stem cells (GSCs) are attractive biological models because of their strict control on pluripotency gene expression, and their potential for huge epigenetic changes in a short period of time. Few data exists on the cooperative impact of GSC-specific genes on differentiated cells. In this study, we over-expressed 3 GSC-specific markers, STELLA, OCT4 and NANOS2, collectively designated as (SON), using the novel polycistronic lentiviral gene construct FUM-FD, in HEK293T cells and evaluated promoter activity of the Stra8 GSC marker gene We could show that HEK293T cells expressed pluripotency and GSC markers following ectopic expression of the SON genes. We also found induction of pluripotency markers after serum starvation in non-transduced HEK293T cells. Expression profiling of SON-expressing and serum-starved cells at mRNA and protein level showed the potential of SON factors and serum starvation in the induction of ESRRB, NANOG, OCT4 and REX1 expression. Additionally, the data indicated that the mouse Stra8 promoter could only be activated in a subpopulation of HEK293T cells, regardless of SON gene expression. We conclude that heterogeneous population of the HEK293T cells might be easily shifted towards expression of the pluripotency markers by ectopic expression of the SON factors or by growth in serum depleted media.
生殖系干细胞(GSCs)是极具吸引力的生物学模型,因为它们对多能性基因表达有严格调控,且在短时间内有发生巨大表观遗传变化的潜力。关于GSC特异性基因对分化细胞的协同影响的数据很少。在本研究中,我们使用新型多顺反子慢病毒基因构建体FUM-FD在HEK293T细胞中过表达3种GSC特异性标志物,即STELLA、OCT4和NANOS2,统称为(SON),并评估了Stra8 GSC标志物基因的启动子活性。我们发现,在SON基因异位表达后,HEK293T细胞表达了多能性和GSC标志物。我们还发现,未转导的HEK293T细胞在血清饥饿后诱导了多能性标志物的表达。对表达SON的细胞和血清饥饿细胞进行的mRNA和蛋白质水平的表达谱分析显示,SON因子和血清饥饿在诱导ESRRB、NANOG、OCT4和REX1表达方面具有潜力。此外,数据表明,无论SON基因表达如何,小鼠Stra8启动子仅在HEK293T细胞的一个亚群中被激活。我们得出结论,通过SON因子的异位表达或在血清耗尽的培养基中生长,HEK293T细胞的异质群体可能很容易转向多能性标志物的表达。