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快速运动细胞中的膜张力由细胞骨架力决定。

Membrane tension in rapidly moving cells is determined by cytoskeletal forces.

机构信息

Department of Physics, Technion, Israel Institute of Technology, Haifa 32000, Israel.

出版信息

Curr Biol. 2013 Aug 5;23(15):1409-17. doi: 10.1016/j.cub.2013.05.063. Epub 2013 Jul 3.

Abstract

BACKGROUND

Membrane tension plays an essential role in cell motility. The load imposed by the tensed membrane restrains actin polymerization, promotes rear retraction, and influences membrane transport. Moreover, membrane tension is crucial for large-scale coordination of cell boundary dynamics. Despite its importance, little is known about how membrane tension is set and regulated in cells. The prevailing hypothesis is that membrane tension is largely controlled by membrane-cytoskeleton adhesion and/or changes in membrane area.

RESULTS

In this work, we measure the apparent membrane tension in rapidly moving fish epithelial keratocytes under normal and perturbed conditions with a tether-pulling assay. We find that enlargement of the cell surface area by fusion with giant unilamellar vesicles (GUVs) has only minor effects on membrane tension and on cell movement. However, modulation of the cytoskeletal forces has a substantial influence on tension: reduction of the actin-pushing forces along the cell's leading edge leads to a significant decrease in membrane tension, whereas increase of the strength of adhesion and/or decrease of myosin-induced contraction leads to higher tension.

CONCLUSIONS

We find that the membrane tension in rapidly moving keratocytes is primarily determined by a mechanical force balance between the cell membrane and cytoskeletal forces. Our results highlight the role of membrane tension as a global mechanical regulator of cell behavior.

摘要

背景

膜张力在细胞运动中起着至关重要的作用。紧张膜施加的负载限制了肌动蛋白聚合,促进了后部回缩,并影响了膜运输。此外,膜张力对于细胞边界动力学的大规模协调至关重要。尽管其重要性不言而喻,但人们对细胞内膜张力的设定和调节知之甚少。目前的假设是,膜张力主要受膜-细胞骨架黏附以及膜面积变化的控制。

结果

在这项工作中,我们使用系绳牵拉法在正常和受扰条件下测量快速运动的鱼上皮角膜细胞中的表观膜张力。我们发现,通过与巨大单层囊泡(GUV)融合来扩大细胞表面积对膜张力和细胞运动的影响很小。然而,细胞骨架力的调节对张力有很大的影响:沿细胞前缘的肌动蛋白推挤力的减少会导致膜张力显著降低,而黏附力的增强和/或肌球蛋白诱导的收缩力的降低会导致更高的张力。

结论

我们发现,快速运动的角膜细胞中的膜张力主要由细胞膜和细胞骨架力之间的力学力平衡决定。我们的结果强调了膜张力作为细胞行为的全局力学调节剂的作用。

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