Nemoto T, Uchida G, Takamatsu A, Tsuchiya Y
Department of Applied Physics, Faculty of Science, Tokyo Institute of Technology, Japan.
Biochem Biophys Res Commun. 1995 Sep 25;214(3):1102-7. doi: 10.1006/bbrc.1995.2399.
The stochastic behavior of organelles during the recovery process of protoplasmic streaming is investigated in Nitella internodal cells at a nanometer space resolution. The motions of organelles in the components parallel and perpendicular to the alignment of actin filaments in the cell are analysed from the traces of displacement of 860 organelles in 1/30s (= video rate). The analysis of those traces shows that the generation of motive forces to the organelle follows the Poisson process. Therefore, we have been able to estimate the step size corresponding to the single force generation as approximately 100 nm.
在纳米空间分辨率下,对丽藻节间细胞原生质体流动恢复过程中细胞器的随机行为进行了研究。根据1/30秒(即视频速率)内860个细胞器的位移轨迹,分析了细胞中与肌动蛋白丝排列平行和垂直的组分中细胞器的运动。对这些轨迹的分析表明,细胞器驱动力的产生遵循泊松过程。因此,我们能够估计与单力产生相对应的步长约为100纳米。