Popovic Jelena, Stanisavljevic Danijela, Schwirtlich Marija, Klajn Andrijana, Marjanovic Jelena, Stevanovic Milena
Laboratory for Human Molecular Genetics, Institute of Molecular Genetics and Genetic Engineering, University of Belgrade, Belgrade, Serbia.
PLoS One. 2014 Mar 17;9(3):e91852. doi: 10.1371/journal.pone.0091852. eCollection 2014.
SOX14 is a member of the SOXB2 subgroup of transcription factors implicated in neural development. Although the first SOX14 gene in vertebrates was cloned and characterized more than a decade ago and its expression profile during development was revealed in various animal model systems, the role of this gene during neural development is largely unknown. In the present study we analyzed the expression of SOX14 in human NT2/D1 and mouse P19 pluripotent embryonal carcinoma cells. We demonstrated that it is expressed in both cell lines and upregulated during retinoic acid induced neural differentiation. We showed that SOX14 was expressed in both neuronal and non-neuronal differentiated derivatives, as revealed by immunocytochemistry. Since it was previously proposed that increased SOXB2 proteins level interfere with the activity of SOXB1 counteracting partners, we compared expression patterns of SOXB members during retinoic acid induction of embryonal carcinoma cells. We revealed that upregulation of SOX14 expression is accompanied by alterations in the expression patterns of SOXB1 members. In order to analyze the potential cross-talk between them, we generated SOX14 expression construct. The ectopic expression of SOX14 was demonstrated at the mRNA level in NT2/D1, P19 and HeLa cells, while an increased level of SOX14 protein was detected in HeLa cells only. By transient transfection experiments in HeLa cells we showed for the first time that ectopic expression of SOX14 repressed SOX1 expression, whereas no significant effect on SOX2, SOX3 and SOX21 was observed. Data presented here provide an insight into SOX14 expression during in vitro neural differentiation of embryonal carcinoma cells and demonstrate the effect of its ectopic expression on protein levels of SOXB members in HeLa cells. Obtained results contribute to better understanding the role of one of the most conserved SOX proteins.
SOX14是参与神经发育的转录因子SOXB2亚组的成员。尽管脊椎动物中的第一个SOX14基因在十多年前就已被克隆和鉴定,并且其在发育过程中的表达谱已在各种动物模型系统中得到揭示,但该基因在神经发育过程中的作用仍 largely unknown。在本研究中,我们分析了SOX14在人NT2/D1和小鼠P19多能胚胎癌细胞中的表达。我们证明它在两种细胞系中均有表达,并在视黄酸诱导的神经分化过程中上调。我们通过免疫细胞化学显示,SOX14在神经元和非神经元分化衍生物中均有表达。由于先前有人提出SOXB2蛋白水平的升高会干扰SOXB1拮抗伙伴的活性,我们比较了胚胎癌细胞视黄酸诱导过程中SOXB成员的表达模式。我们发现SOX14表达的上调伴随着SOXB1成员表达模式的改变。为了分析它们之间潜在的相互作用,我们构建了SOX14表达构建体。在NT2/D1、P19和HeLa细胞中,在mRNA水平上证明了SOX14的异位表达,而仅在HeLa细胞中检测到SOX14蛋白水平的升高。通过在HeLa细胞中的瞬时转染实验,我们首次表明SOX14的异位表达抑制了SOX1的表达,而对SOX2、SOX3和SOX21没有观察到显著影响。这里呈现的数据提供了对胚胎癌细胞体外神经分化过程中SOX14表达的深入了解,并证明了其异位表达对HeLa细胞中SOXB成员蛋白水平的影响。获得的结果有助于更好地理解最保守的SOX蛋白之一的作用。