Institut Curie, UMR 144 CNRS/IC, 26 rue d'Ulm, 75248 Paris Cedex 05, France.
Cytoskeleton (Hoboken). 2012 Sep;69(9):601-12. doi: 10.1002/cm.21047. Epub 2012 Jul 11.
Cell polarity plays a key role in regulating cell-cell communication, tissue architecture, and development. Both internal and external cues participate in directing polarity and feedback onto each other for robust polarization. One poorly appreciated layer of polarity regulation comes from electrochemical signals spatially organized at the level of the cell or the tissue. These signals which include ion fluxes, membrane potential gradients, or even steady electric fields, emerge from the polarized activation of specific ion transporters, and may guide polarity in wound-healing, development or regeneration. How a given electrochemical cue may influence cytoskeletal elements and cell polarity remains unclear. Here, we review recent progress highlighting the role of electrochemical signals in cell and tissue spatial organization, and elucidating the mechanisms for how such signals may regulate cytoskeletal assembly for cell polarity.
细胞极性在调节细胞间通讯、组织架构和发育方面起着关键作用。内部和外部线索共同参与指导极性,并相互反馈以实现强大的极化。细胞或组织水平上电化学信号的空间组织是一个尚未被充分认识的极性调节层面。这些信号包括离子流、膜电位梯度甚至稳定的电场,源自特定离子转运蛋白的极化激活,并可能指导创伤愈合、发育或再生中的极性。特定电化学信号如何影响细胞骨架元件和细胞极性尚不清楚。在这里,我们综述了最近的研究进展,强调了电化学信号在细胞和组织空间组织中的作用,并阐明了这些信号如何调节细胞骨架组装以实现细胞极性的机制。