Yoshimoto Y, Matsumura F, Kamiya N
Cell Motil. 1981;1(4):433-43. doi: 10.1002/cm.970010404.
Calcium is now generally thought to play a key role in regulating a variety of cellular movements. When the plasmodium of Physarum polycephalum was treated with the calcium-ionophore A23187 or the quasi-ionophore amphotericin B, Ca2+ leaked out. Ca2+ efflux into the ambient solution from the plasmodial strand segment was measured by the luminescence of a photoprotein aequorin, and the tensile force production was recorded simultaneously. Ca2+ efflux oscillated with the same period as the cycle of tension generation in the strand, but the phase of cyclic changes in Ca2+ efflux was opposite to that of tension generation. That is, Ca2+ efflux fell in the increasing tension phase and rose in the decreasing tension phase. Cyclic changes in efflux of Ca2+ are provisionally interpreted as reflecting corresponding changes in concentrations of free Ca2+ in the cytoplasm.
现在普遍认为钙在调节多种细胞运动中起关键作用。当多头绒泡菌的原生质体用钙离子载体A23187或类离子载体两性霉素B处理时,Ca2+会泄漏出来。通过光蛋白水母发光蛋白的发光来测量Ca2+从原生质体链段流入周围溶液的情况,并同时记录张力产生情况。Ca2+外流与链中张力产生的周期相同,但Ca2+外流的周期性变化相位与张力产生的相位相反。也就是说,Ca2+外流在张力增加阶段下降,在张力下降阶段上升。Ca2+外流的周期性变化暂时被解释为反映了细胞质中游离Ca2+浓度的相应变化。