黏附和细胞骨架完整性对成纤维细胞牵引的影响。

O Thoumine, A Ott
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引用次数: 34

摘要

细胞收缩性在细胞形态发生和组织模式形成中起着重要作用。在这种情况下,我们研究了细胞牵引力的表达如何取决于细胞与底物的接触和细胞骨架组织。在聚二甲基硅氧烷弹性膜上培养的鸡成纤维细胞的定性观察表明,肌动蛋白应力纤维的皱褶形态与肌动蛋白应力纤维的分布和局部接触有很强的空间关系。为了进一步表征细胞收缩性,在不同的底物粘附性、细胞骨架扰动和温度条件下,测量了triton -通透性成纤维细胞在atp诱导下收缩的投影面积。在所有条件下,细胞收缩程度与ATP浓度之间的关系由酶动力学定律很好地描述。在明胶包被的底物上培养细胞,降低温度,使用磷酸核糖核苷酸而不是ATP,并用细胞松弛素D处理细胞,这些都降低了细胞的收缩率,这表明成纤维细胞的收缩是由温度和ATP依赖的肌动蛋白/肌球蛋白应力纤维滑动机制产生的,通过局灶粘连传递到底物。用诺可达唑或紫杉醇处理细胞不影响ATP刺激下通透性成纤维细胞的收缩,这表明微管不直接抵抗细胞牵引。用钒酸盐处理细胞增加了细胞收缩,表明中间丝有助于传递张力。
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Influence of adhesion and cytoskeletal integrity on fibroblast traction.

Cellular contractility plays an important role in cell morphogenesis and tissue pattern formation. In this context, we examined how the expression of cell traction depends on cell-to-substrate contacts and cytoskeletal organization. Qualitative observation of chick fibroblasts cultured on an elastic film of polydimethylsiloxane indicated a strong spatial relationship between wrinkle pattern and distribution of actin stress fibers and focal contacts. In order to further characterize cell contractility, the projected area of Triton-permeabilized fibroblasts upon ATP-induced retraction was measured in various conditions of substrate adhesivity, cytoskeletal perturbation, and temperature. In all conditions, the relationship between degree of cell retraction and ATP concentration was well described by the laws of enzyme kinetics. Culturing cells on a gelatin-coated substrate, decreasing the temperature, using phosphate ribonucleotides other than ATP, and treating cells with cytochalasin D all diminished the rate of cell retraction, indicating that fibroblast traction is generated by a temperature- and ATP-dependent actin/myosin stress fiber sliding mechanism, transmitted to the substrate through focal adhesions. Treatment of cells with either nocodazole or taxol did not affect retraction of permeabilized fibroblasts upon stimulation with ATP, suggesting that microtubules do not directly resist cell traction. Treatment of cells with vanadate increased cell retraction, suggesting that intermediate filaments help transmit tension.

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