Wohlfarth-Bottlermann K E, Fleischer M
Cell Tissue Res. 1976 Jan 27;165(3):327-44. doi: 10.1007/BF00222437.
Isometric contracting protoplasmic veins of Physarum polycephalum show cycling patterns of cytoplasmic F-actin, dependent on their oscillating contraction behaviour (minute rhythms). The process of fibrillogenesis represents a parallel arrangement of F-actin chains ("plasma filaments, microfilaments") during the isometric contraction phase. A part of the results of the present work corroborates previous results on stretch-activated veins which showed that the fibrillar form of F-actin reflects the isometric contracted state. During isometric relaxation phase, a disaggregation of the fibrillar pattern takes place and is accompanied by a deparallelisation of F-actin chains. Therefore, the isometric relaxed state of cytoplasmic actomyosin is non-fibrillar in nature. Thus, the morphologically detectable fibrillar form of cytoplasmic actomyosin, according to physiological interpretation, is solely representative of the isometric contracted state. The question whether assembly-disassembly processes, e.g. G equilibrium F-actin-transformation, play a role in the contraction-relaxation cycle is discussed.
多头绒泡菌等长收缩的原生质静脉显示出细胞质F-肌动蛋白的循环模式,这取决于它们的振荡收缩行为(分钟节律)。纤维形成过程代表了等长收缩阶段F-肌动蛋白链(“血浆细丝、微丝”)的平行排列。本研究的部分结果证实了先前关于拉伸激活静脉的结果,该结果表明F-肌动蛋白的纤维状形式反映了等长收缩状态。在等长舒张期,纤维状模式发生解聚,并伴随着F-肌动蛋白链的去平行化。因此,细胞质肌动球蛋白的等长舒张状态本质上是非纤维状的。因此,根据生理学解释,细胞质肌动球蛋白在形态上可检测到的纤维状形式仅代表等长收缩状态。文中讨论了组装-拆卸过程,例如G平衡F-肌动蛋白转化,是否在收缩-舒张循环中起作用的问题。