Eskelinen S, Huotari V, Sormunen R, Palovuori R, Kok J W, Lehto V P
Biocenter, University of Oulu, Finland.
J Cell Physiol. 1992 Jan;150(1):122-33. doi: 10.1002/jcp.1041500117.
We have studied the effect of intracellular pH on the establishment and maintenance of the cellular polarity in MDCK cells by utilizing nigericin which causes lowering of the cytoplasmic pH. At pH below 6.5, MDCK cells lost their polarized morphology and became roundish, with an increased apical area and shortened and unstable lateral walls. The lateral wall marker proteins uvomorulin and Na,K-ATPase remained segregated to the lateral walls in the acidified cells, as shown by immunofluorescence microscopy. Fodrin, on the other hand, was released from its normal basolateral residence and was found in the cytoplasm. Actin, which normally co-localizes with fodrin along the basolateral walls, showed a dotty distribution in the cytoplasm of acidified cells, while stress fibers remained intact. Microtubular network appeared flattened, but the Golgi complex retained its apical position. The pH change-induced alterations were readily reversible, as the normal basal-apical polarity (columnar shape, distinct apical and lateral domains with apposing and stiff lateral membranes) was reformed within 10 minutes after restoring the normal pH gradient across the cell membrane. This coincided with the translocation of fodrin from the cytoplasm to the lateral walls. The results show that lowering of intracellular pH leads to temporary segregation of fodrin from the other components of the membrane skeleton assembly, and that association of fodrin with the lateral walls seems to be a prerequisite for their close apposition and for the maintenance of normal basal-axial polarity.
我们利用尼日利亚菌素(可导致细胞质pH值降低)研究了细胞内pH值对MDCK细胞中细胞极性建立和维持的影响。在pH值低于6.5时,MDCK细胞失去其极性形态,变得呈圆形,顶端面积增加,侧壁缩短且不稳定。免疫荧光显微镜显示,侧壁标记蛋白桥粒芯糖蛋白和钠钾ATP酶在酸化细胞中仍分隔在侧壁。另一方面,血影蛋白从其正常的基底外侧位置释放到细胞质中。正常情况下与血影蛋白沿基底外侧壁共定位的肌动蛋白,在酸化细胞的细胞质中呈点状分布,而应力纤维保持完整。微管网络看起来变扁平了,但高尔基体复合体仍保留其顶端位置。pH值变化引起的改变很容易逆转,因为在恢复跨细胞膜的正常pH梯度后10分钟内,正常的基底-顶端极性(柱状形态,具有相对且坚硬的外侧膜的明显顶端和外侧区域)就得以恢复。这与血影蛋白从细胞质向侧壁的转位同时发生。结果表明,细胞内pH值降低会导致血影蛋白与膜骨架组装的其他成分暂时分离,而且血影蛋白与侧壁的结合似乎是它们紧密贴附以及维持正常基底-轴极性的前提条件。