Furuya Kishio, Sokabe Masahiro
Japan Science and Technology Agency, SORST/ICORP, Cell Mechanosensing Project.
Clin Calcium. 2008 Sep;18(9):1295-303.
Mechanical stress is essential for the survival of cells and the maintenance of tissues. However, the mechanisms of cell response to mechanical stress are not fully elucidated due to the diversity of mechanical stresses and mechanosensors. Ion channels, cytoskeletons, or adherence molecules are supposed to be most probable candidates for the mechanosensor in cells. In addition, a release of extracellular messengers including ATP in response to mechanical stresses is thought to be an important mechanism of the mechanosensing in the tissue. Here, we review how these mechanosensing machineries detect various mechanical stresses and work in cells.
机械应力对于细胞存活和组织维持至关重要。然而,由于机械应力和机械传感器的多样性,细胞对机械应力的反应机制尚未完全阐明。离子通道、细胞骨架或黏附分子被认为是细胞中最有可能的机械传感器候选者。此外,响应机械应力而释放包括ATP在内的细胞外信使被认为是组织中机械传感的重要机制。在此,我们综述这些机械传感机制如何检测各种机械应力并在细胞中发挥作用。