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On the mechanism of the cell cycle control of suspension-cultured tobacco cells after exposure to static magnetic field

机译:静态磁场暴露后悬浮培养烟草细胞细胞周期控制的机理

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摘要

One of the main sites of the magnetic fields influence on living cells is the cell cycle. The intensity of this influence however, varies depending on the cell type and the duration of the treatment. Suspension of cultured tobacco cells (Nicotiana tabacum cv. Barley 21) were synchronized via sucrose starvation at their stationary growth phase. The cells were then exposed to 0.2 m T SMF up to 24 h. The progression of different cell cycle phases was monitored through flow cytometry in a time course manner. Expression of cell cycle controlling genes and amounts of certain signaling molecules were measured as well. Exposure to SMF delayed G1.S transition which was accompanied by decrease of cyclin-dependent kinases A (CDK A) and D-type cyclin, but an increase in the adenylyl cyclase (AC), transcription factor E2F, retinoblastoma protein (Rbp), and CDK-inhibitor protein 21 (p21) transcript accumulation. Exposure to SMF also increased the contents of nitric oxide (NO), hydrogen peroxide (H2O2), and salicylic acid (SA), compared to the control group. The results suggest a signaling pathway triggered by SMF starting from accumulation of NO and H2O2 followed by downstream events including the increase of cyclic nucleotides and subsequent decrease of both CDKA and CycD.
机译:磁场的主要网站之一对活细胞的影响是细胞周期。然而,这种影响的强度根据细胞类型和治疗的持续时间而变化。培养的烟草细胞(尼古拉塔巴氏菌CV。大麦21)通过蔗糖饥饿在其固定生长阶段同步。然后将细胞暴露于0.2M T SMF至24小时。通过流式细胞术以时间过程方式监测不同细胞周期相的进展。还测量细胞周期控制基因的表达和某些信号分子的量。暴露于SMF延迟G1.S转变伴随着细胞周期蛋白依赖性激酶A(CDK A)和D型细胞周期蛋白的转变,但随着腺苷酸环酶(AC),转录因子E2F,视网膜母细胞瘤蛋白(RBP)的增加,和CDK抑制剂蛋白21(p21)转录物积累。与对照组相比,暴露于SMF也增加了一氧化氮(NO),过氧化氢(H 2 O 2)和水杨酸(SA)的含量。结果表明,由NO和H2O2的积累开始触发的信号传导途径,然后是下游事件,包括循环核苷酸的增加和随后的CDKA和CYCD减少。

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