Matsuoka H, Matsumoto S, Kinoshita M, Yamada S
Department of Industrial Chemistry, Faculty of Technology, Tokyo University of Agriculture and Technology, Japan.
Biochim Biophys Acta. 1988 Oct 7;971(3):255-65. doi: 10.1016/0167-4889(88)90140-1.
Cell division cycle (cdc) mutants of Saccharomyces cerevisiae were used to determine the most effective stage for the directional control of cell budding using an electric stimulus. The selected mutants were cdc 35 and cdc 28, which could be reversibly arrested before spindle pole body satellite formation (SPBSF) and spindle pole body duplication (SPBD), respectively. The budding direction (theta) was defined so that the direction parallel to that of the electric field was 0 degree. Considering the symmetry of the experimental conditions, the range of theta was defined as 0-90 degrees. The electric stimulus applied in the present study was alternating pulses (pulse height, +/- 15 V; pulse width at half pulse height, 5 microseconds; frequency; 10 kHz). The peak height of the cross membrane potential was estimated as 472 mV, which was sufficient to induce considerable strain in the cell membrane. In the case of cdc 35, the 95% confidence interval (95% CI) of the budding direction was 7-25 degrees when subjected to electric stimulus, while the 95% CI of the budding direction without electric stimulus was 35-57 degrees. In the case of cdc 28, 95% CI values of the budding direction with and without electric stimulus were 1229 degrees and 23-56 degrees, respectively. These results demonstrate that the stage after SPBD is effective for the directional control of yeast cell budding using an electric stimulus. Simultaneously, an electric stimulus reduced the cell budding time of both the cdc mutants used. Therefore, the electric stimulus was also effective in promoting cell cycle progression under the present conditions.
利用酿酒酵母的细胞分裂周期(cdc)突变体来确定使用电刺激进行细胞出芽方向控制的最有效阶段。所选突变体为cdc 35和cdc 28,它们分别可在纺锤极体卫星形成(SPBSF)和纺锤极体复制(SPBD)之前被可逆性阻滞。出芽方向(θ)的定义是,与电场方向平行的方向为0度。考虑到实验条件的对称性,θ的范围定义为0至90度。本研究中施加的电刺激为交变脉冲(脉冲高度,±15 V;半脉冲高度处的脉冲宽度,5微秒;频率,10 kHz)。跨膜电位的峰值估计为472 mV,这足以在细胞膜中诱导相当大的应变。对于cdc 35,受到电刺激时出芽方向的95%置信区间(95% CI)为7至25度,而无电刺激时出芽方向的95% CI为35至57度。对于cdc 28,有和无电刺激时出芽方向的95% CI值分别为12至29度和23至56度。这些结果表明,SPBD之后的阶段对于使用电刺激进行酵母细胞出芽的方向控制是有效的。同时,电刺激缩短了所使用的两种cdc突变体的细胞出芽时间。因此,在当前条件下电刺激在促进细胞周期进程方面也是有效的。