University of Ljubljana, Faculty of Medicine, Institute of Cell Biology, Ljubljana, Slovenia.
University of Amsterdam, Swammerdam Institute for Life Sciences, Amsterdam, The Netherlands.
Sci Rep. 2018 Nov 20;8(1):17133. doi: 10.1038/s41598-018-35370-y.
Tunneling membrane nanotubes (TnTs) are membrane protrusions connecting nearby or distant cells in vitro and in vivo. Functions of TnTs in cellular processes are various and rely on TnT structure, which also depends on cytoskeletal composition. In the present study, we focused on the organization of microtubules (MTs) and intermediate filaments (IFs) in TnTs of urothelial cells. We analysed TnTs of normal porcine urothelial cells, which morphologically and physiologically closely resemble normal human urothelial cells, and of cancer cells derived from invasive human urothelial neoplasm. Wide-field fluorescence, confocal and super-resolution microscopy techniques, together with image analyses and 3D reconstructions enlightened specific MT-IF organization in TnTs, and for the first time revealed that MTs and IFs co-occur in the majority of normal and cancer urothelial cell TnTs. Our findings show that in the initiation segment of TnTs, MTs are cross-linked with each other into filamentous network, however in the middle and the attaching segment of TnT, MTs can helically enwrap IFs, the phenomenon that has not been shown before within the TnTs. In this study, we assess MT-IF co-occurrence in TnTs and present evidence that such helical organization of MTs enwrapping IFs is only occurring in a minority of the TnTs. We also discuss the possible cell-biological and physiological reasons for helical organization of MTs in TnTs.
隧道膜纳米管(TnTs)是连接体外和体内附近或远处细胞的膜突起。TnTs 在细胞过程中的功能多种多样,依赖于 TnT 结构,而 TnT 结构又依赖于细胞骨架的组成。在本研究中,我们专注于尿路上皮细胞 TnTs 中微管(MTs)和中间丝(IFs)的组织。我们分析了正常猪尿路上皮细胞的 TnTs,这些细胞在形态和生理上与正常人类尿路上皮细胞非常相似,以及源自侵袭性人类尿路上皮肿瘤的癌细胞的 TnTs。宽场荧光、共聚焦和超分辨率显微镜技术,以及图像分析和 3D 重建,揭示了 TnTs 中特定的 MT-IF 组织,这是首次揭示 MTs 和 IFs 共同存在于大多数正常和癌症尿路上皮细胞 TnTs 中。我们的发现表明,在 TnTs 的起始段,MTs 相互交联成丝状网络,然而在 TnT 的中间段和附着段,MTs 可以螺旋包裹 IFs,这一现象以前在 TnTs 中没有显示过。在这项研究中,我们评估了 TnTs 中 MT-IF 的共同出现,并提供了证据表明,MTs 螺旋包裹 IFs 的这种组织方式仅发生在少数 TnTs 中。我们还讨论了 MTs 在 TnTs 中螺旋组织的可能细胞生物学和生理学原因。