Shalini Sonia, Bansal Mohinder P
Department of Biophysics, Panjab University, Chandigarh, 160014, India.
Biol Res. 2007;40(3):307-317. Epub 2008 Apr 17.
Previous studies have shown that transcription factors, API and NFkB exert important roles in the process by which selenium regulates spermatogenesis. Glutathione, an intracellular thiol, acts as a source of reducing power and aids in maintenance of the cellular redox status. The activities of selenium are closely related to the availability of glutathione. Presently, mouse testicular cells were cultured in the presence of BSO, a known glutathione depletor, to generate oxidative stress. Selenium (Se) was added as sodium selenite to these cells at concentrations of 0.5 microM and 1.5 microM. It was observed that at 1.5 microM, Se acted as a pro-oxidant and significantly decreased the redox ratio. RT PCR analysis revealed that cjun, cfos expression increased in testicular cells cultured with Se compared to control. However, the major outcome was that the combined effect of Se supplementation and GSH depletion resulted in reduced expression of cjun and cfos while p65 expression increased. This suggests that selenium affects both these transcription factors differently. Our study indicates that though low levels of oxidative stress generated by moderate doses of selenium augments the expression of cjun and cfos, a robust increase in the ROS generation caused by the dual effect high levels of selenium and glutathione depletion leads to decrease in the expression of these genes. The present work substantiates our in vivo experiments and indicates the detrimental effect of excess selenium supplementation on male fertility.
先前的研究表明,转录因子API和NFkB在硒调节精子发生的过程中发挥重要作用。谷胱甘肽是一种细胞内硫醇,作为还原能力的来源,有助于维持细胞的氧化还原状态。硒的活性与谷胱甘肽的可用性密切相关。目前,在已知的谷胱甘肽消耗剂BSO存在的情况下培养小鼠睾丸细胞,以产生氧化应激。以亚硒酸钠的形式向这些细胞中添加浓度为0.5 microM和1.5 microM的硒(Se)。观察到,在1.5 microM时,Se作为促氧化剂,显著降低了氧化还原比。RT PCR分析显示,与对照组相比,在用Se培养的睾丸细胞中cjun、cfos表达增加。然而,主要结果是,补充硒和消耗谷胱甘肽的联合作用导致cjun和cfos表达降低,而p65表达增加。这表明硒对这两种转录因子的影响不同。我们的研究表明,尽管中等剂量的硒产生的低水平氧化应激会增加cjun和cfos的表达,但高水平的硒和谷胱甘肽消耗的双重作用导致的ROS生成的显著增加会导致这些基因的表达下降。目前的工作证实了我们的体内实验,并表明过量补充硒对男性生育能力的有害影响。