Strohmeier R, Bereiter-Hahn J
Exp Cell Res. 1984 Oct;154(2):412-20. doi: 10.1016/0014-4827(84)90165-4.
Dependence of locomotion of Xenopus laevis epidermal cells on calcium influx from the external medium was investigated. Inhibition of Ca2+ influx by 2 mM La3+ or 4 mM Tb3+ in the culture medium causes an immediate stop to locomotion and a loss of motion at the outer margin of the lamella; microcolliculi disappear and the entire lamella becomes flat and very thin. The cell body region enlarges by spreading into the lamella to an extent approximately coincident with the distribution of myosin. The increase in thickness of this area is the result. The cytoskeletal elements actin, alpha-actinin and myosin become homogeneously distributed throughout the cell and a great number of straight microtubules extend to the margin after 20 min in La3+-containing media. Prekeratin distribution does not change. Reduction of calcium concentration in the external medium by EGTA leads to cessation of cell locomotion. Sr2+ (1-4 mM) is also able to replace calcium for triggering locomotion. These findings point to a control of Ca2+-activated contractions of actomyosin by influx of external Ca2+. According to our model of cell locomotion [14] the contractions generate a hydrostatic pressure extending the lamella by flow of hyaloplasm towards the margin. Small swellings (microcolliculi) appearing thereby will be dislocated by a calcium-dependent sol-gel transformation in this area, which contains actin but not myosin.
研究了非洲爪蟾表皮细胞运动对来自外部介质的钙内流的依赖性。培养基中2 mM La3+或4 mM Tb3+对Ca2+内流的抑制会导致运动立即停止,并且片层外缘的运动丧失;微丘消失,整个片层变得扁平且非常薄。细胞体区域通过向片层扩展而增大,扩展程度与肌球蛋白的分布大致一致。这一区域厚度的增加就是结果。细胞骨架成分肌动蛋白、α-辅肌动蛋白和肌球蛋白在整个细胞中均匀分布,并且在含有La3+的培养基中20分钟后,大量笔直的微管延伸到边缘。前角蛋白分布没有变化。EGTA降低外部介质中的钙浓度会导致细胞运动停止。Sr2+(1 - 4 mM)也能够替代钙来触发运动。这些发现表明,外部Ca2+的内流控制着肌动球蛋白的Ca2+激活收缩。根据我们的细胞运动模型[14],收缩产生静水压力,通过透明质质向边缘流动来扩展片层。由此出现的小肿胀(微丘)将通过该区域中依赖钙的溶胶 - 凝胶转变而移位,该区域含有肌动蛋白但不含肌球蛋白。