Jaeger R G, Jaeger M M, Araújo V C, Kachar B
Laboratory of Cellular Biology, National Institute on Deafness and Other Communications Disorders, National Institutes of Health, Bethesda, Maryland 20850, USA.
Cell Motil Cytoskeleton. 1995;32(4):289-98. doi: 10.1002/cm.970320405.
Salivary gland neoplastic myoepithelial cells in culture form very thin cytoplasmic processes in which the vimentin network is well dispersed. These vimentin filaments can be individually visualized by immunofluorescence. In this study, we have analyzed the role of microtubules in the distension and organization of the vimentin filament network found in these cells. We find that vimentin filaments colocalize along microtubules; however, a significant number of filaments can also be found in microtubule-free domains. Additionally, vimentin filaments are absent from large domains of microtubule-rich domains. Treatment of neoplastic myepithelial cells with the microtubule inhibitor nocodazole did not cause any retraction of the distended vimentin network. This observation suggests that the structural integrity of microtubules is not important for the stability of the vimentin network. Combining procedures for transient disruption of vimentin filaments and microtubules we observed that, in the absence of microtubules, the vimentin network could reassemble in the perinuclear region but was unable to extend toward the cell periphery. The dispersion of vimentin filaments to the peripheral regions of the cytoplasm could only be observed upon microtubule reassembly. This indicates that microtubules are not required for the stability of the vimentin network, but the dispersion of vimentin filaments to the peripheral cytoplasm depends on active interactions with microtubules.
培养的唾液腺肿瘤性肌上皮细胞形成非常细的细胞质突起,其中波形蛋白网络分布良好。这些波形蛋白丝可通过免疫荧光单独观察到。在本研究中,我们分析了微管在这些细胞中发现的波形蛋白丝网络的扩张和组织中的作用。我们发现波形蛋白丝沿着微管共定位;然而,在无微管区域也能发现大量的波形蛋白丝。此外,富含微管的大区域没有波形蛋白丝。用微管抑制剂诺考达唑处理肿瘤性肌上皮细胞不会导致扩张的波形蛋白网络回缩。这一观察结果表明,微管的结构完整性对波形蛋白网络的稳定性并不重要。结合短暂破坏波形蛋白丝和微管的程序,我们观察到,在没有微管的情况下,波形蛋白网络可以在核周区域重新组装,但无法向细胞周边延伸。只有在微管重新组装后才能观察到波形蛋白丝向细胞质周边区域的分散。这表明微管对于波形蛋白网络的稳定性不是必需的,但波形蛋白丝向周边细胞质的分散取决于与微管的主动相互作用。