Dabbiru Venkata A S, Manu Emmanuel, Biedenweg Doreen, Nestler Peter, Pires Ricardo H, Otto Oliver
Zentrum für Innovationskompetenz: Humorale Immunreaktionen bei kardiovaskulären Erkrankungen, Universität Greifswald, Greifswald, Germany.
Deutsches Zentrum für Herz-Kreislauf-Forschung e.V. Standort Greifswald, Universitätsmedizin Greifswald, Greifswald, Germany.
Cytoskeleton (Hoboken). 2023 Jan;80(1-2):21-33. doi: 10.1002/cm.21735. Epub 2022 Nov 12.
Alterations in the organization of the cytoskeleton precede the escape of adherent cells from the framework of cell-cell and cell-matrix interactions into suspension. With cytoskeletal dynamics being linked to cell mechanical properties, many studies elucidated this relationship under either native adherent or suspended conditions. In contrast, tethered cells that mimic the transition between both states have not been the focus of recent research. Using human embryonic kidney 293 T cells we investigated all three conditions in the light of alterations in cellular shape, volume, as well as mechanical properties and relate these findings to the level, structure, and intracellular localization of filamentous actin (F-actin). For cells adhered to a substrate, our data shows that seeding density affects cell size but does not alter their elastic properties. Removing surface contacts leads to cell stiffening that is accompanied by changes in cell shape, and a reduction in cellular volume but no alterations in F-actin density. Instead, we observe changes in the organization of F-actin indicated by the appearance of blebs in the semi-adherent state. In summary, our work reveals an interplay between molecular and mechanical alterations when cells detach from a surface that is mainly dominated by cell morphology.
细胞骨架组织的改变先于贴壁细胞从细胞间和细胞-基质相互作用框架中逸出进入悬浮状态。由于细胞骨架动力学与细胞力学特性相关,许多研究在天然贴壁或悬浮条件下阐明了这种关系。相比之下,模拟两种状态之间转变的系留细胞尚未成为近期研究的重点。我们使用人胚胎肾293 T细胞,根据细胞形状、体积以及力学特性的改变研究了所有这三种条件,并将这些发现与丝状肌动蛋白(F-肌动蛋白)的水平、结构和细胞内定位联系起来。对于贴附在基质上的细胞,我们的数据表明接种密度会影响细胞大小,但不会改变其弹性特性。去除表面接触会导致细胞变硬,同时伴随着细胞形状的改变和细胞体积的减小,但F-肌动蛋白密度没有变化。相反,我们观察到在半贴壁状态下出现气泡表明F-肌动蛋白的组织发生了变化。总之,我们的工作揭示了细胞从表面脱离时分子和力学改变之间的相互作用,这种相互作用主要由细胞形态主导。