Nin Verónica, Hernández Julio A, Chifflet Silvia
Departamento de Histología y Embriología, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.
Cell Motil Cytoskeleton. 2009 Dec;66(12):1087-99. doi: 10.1002/cm.20416.
In previous works we showed that the depolarization of the plasma membrane potential (PMP) determines a reorganization of the cytoskeleton of diverse epithelia in culture, consisting mainly of a reallocation of peripheral actin toward the cell center, ultimately provoking intercellular disruption. In view of this evidence, we explored in this study the possible effects of membrane potential hyperpolarization on the cytoskeletal organization and adherens junction (AJ) morphology and the stability of confluent bovine corneal endothelial cells in culture. For this purpose, hyperpolarization was achieved by substitution of extracellular sodium by nondiffusible cations or via the incorporation of valinomycin to the control solution. Actin compactness at the cell periphery was assessed by quantitative analysis of fluorescence microscopy images. The stability of the AJ was challenged by calcium deprivation or temperature decrease. Our results showed that plasma membrane hyperpolarization provokes a compaction of AJ-associated actin filaments toward the plasma membrane and an increase in the stability of the AJs. We also observed that the hyperpolarizing procedures determined similar modifications in the actin cytoskeleton of endothelial cells in whole bovine corneas. Together with our previous work, the results of this study contribute to the idea that modifications in the PMP of nonexcitable cells participate in cellular adaptive responses involving reorganization of cytoskeletal components.
在之前的研究中我们发现,质膜电位(PMP)的去极化决定了培养的多种上皮细胞细胞骨架的重组,主要表现为外周肌动蛋白向细胞中心重新分配,最终导致细胞间连接破坏。鉴于此证据,我们在本研究中探讨了膜电位超极化对培养的汇合牛角膜内皮细胞细胞骨架组织、黏附连接(AJ)形态以及稳定性的可能影响。为此,通过用不可扩散阳离子替代细胞外钠或在对照溶液中加入缬氨霉素来实现超极化。通过荧光显微镜图像的定量分析评估细胞周边肌动蛋白的紧实度。通过剥夺钙或降低温度来挑战AJ的稳定性。我们的结果表明,质膜超极化会促使与AJ相关的肌动蛋白丝向质膜紧实,并增加AJ的稳定性。我们还观察到,超极化程序在整个牛角膜的内皮细胞肌动蛋白细胞骨架中产生了类似的变化。与我们之前的工作一起,本研究结果支持了这样一种观点,即非兴奋性细胞PMP的改变参与了涉及细胞骨架成分重组的细胞适应性反应。