Nasizadeh Sima, Myhre Louise, Thiman Lena, Alm Kersti, Oredsson Stina, Persson Lo
Department of Physiological Sciences, Lund University, BMC F-13, S-221 84 Lund, Sweden.
Exp Cell Res. 2005 Aug 15;308(2):254-64. doi: 10.1016/j.yexcr.2005.04.027.
Polyamines are organic cations, which are considered essential for normal cell cycle progression. This view is based on results from numerous studies using a variety of enzyme inhibitors or polyamine analogues interfering with either the metabolism or the physiological functions of the polyamines. However, the presence of non-specific effects may be hard to rule out in such studies. In the present study, we have for the first time used a transgenic cell system to analyze the importance of polyamines in cell growth. We have earlier shown that expression of trypanosomal ODC in an ODC-deficient variant of CHO cells (C55.7) supported growth of these otherwise polyamine auxotrophic cells. However, one of the transgenic cell lines grew much slower than the others. As shown in the present study, the level of ODC activity was much lower in these cells, and that was reflected in a reduction of cellular polyamine levels. Analysis of cell cycle kinetics revealed that reduction of growth was correlated to prolongation of the G1, S, and G2+M phases in the cells. Providing exogenous putrescine to the cells resulted in a normalization of polyamine levels as well as cell cycle kinetics indicating a causal relationship.
多胺是有机阳离子,被认为对正常细胞周期进程至关重要。这一观点基于众多研究的结果,这些研究使用了各种酶抑制剂或多胺类似物来干扰多胺的代谢或生理功能。然而,在此类研究中可能难以排除非特异性效应的存在。在本研究中,我们首次使用转基因细胞系统来分析多胺在细胞生长中的重要性。我们之前已表明,在CHO细胞(C55.7)的ODC缺陷变体中表达锥虫ODC可支持这些原本多胺营养缺陷型细胞的生长。然而,其中一个转基因细胞系的生长速度比其他细胞系慢得多。如本研究所示,这些细胞中ODC活性水平低得多,这反映在细胞多胺水平的降低上。细胞周期动力学分析表明,生长的降低与细胞中G1、S和G2 + M期的延长相关。向细胞提供外源性腐胺可使多胺水平以及细胞周期动力学正常化,表明存在因果关系。