Cornet M, Lambert I H, Hoffmann E K
Laboratory of Cell and Tissue Biology, University of Liège, Belgium.
J Membr Biol. 1993 Jan;131(1):55-66. doi: 10.1007/BF02258534.
Pretreatment with cytochalasin B, which is known to disrupt microfilaments, significantly inhibits regulatory volume decrease (RVD) in Ehrlich ascites tumor cells, suggesting that an intact microfilament network is a prerequisite for a normal RVD response. Colchicine, which is known to disrupt microtubules, has no significant effect on RVD. Ehrlich cells have a cortical three-dimensional, orthogonal F-actin filament network which makes the cells look completely black in light microscopy following immunogold/silver staining using anti-actin antibodies. After addition of cytochalasin B, the stained cells get lighter with black dots localized to the plasma membrane and appearance of multiple knobby protrusions at cell periphery. Also, a significant decrease in the staining of the cells is seen after 15 min of RVD in hypotonic medium. This microfilament reorganization appears during RVD in the presence of external Ca2+ or Ca(2+)-ionophore A23187. It is, however, abolished in the absence of extracellular calcium, with or without prior depletion of intracellular Ca2+ stores. An effect of increased calcium influx might therefore be considered. The microfilament reorganization during RVD is abolished by the calmodulin antagonists pimozide and trifluoperazine, suggesting the involvement of calmodulin in the process. The microfilament reorganization is also prevented by addition of quinine. This quinine inhibition is overcome by addition of the K+ ionophore valinomycin.
用已知可破坏微丝的细胞松弛素B进行预处理,可显著抑制艾氏腹水瘤细胞的调节性容积减小(RVD),这表明完整的微丝网络是正常RVD反应的先决条件。已知可破坏微管的秋水仙碱对RVD无显著影响。艾氏细胞有一个皮质三维正交F-肌动蛋白丝网络,在用抗肌动蛋白抗体进行免疫金/银染色后,在光学显微镜下细胞看起来完全呈黑色。加入细胞松弛素B后,染色的细胞变浅,黑点定位于质膜,细胞周边出现多个瘤状突起。此外,在低渗培养基中进行RVD 15分钟后,可见细胞染色显著减少。这种微丝重组在存在外部Ca2+或Ca(2+)-离子载体A23187的RVD过程中出现。然而,在没有细胞外钙的情况下,无论细胞内Ca2+储存是否预先耗尽,这种重组都会被消除。因此,可以考虑钙内流增加的作用。RVD过程中的微丝重组被钙调蛋白拮抗剂匹莫齐特和三氟拉嗪消除,表明钙调蛋白参与了这一过程。加入奎宁也可防止微丝重组。加入K+离子载体缬氨霉素可克服这种奎宁抑制作用。