Özkucur Nurdan, Song Bing, Bola Sharanya, Zhang Lei, Reid Brian, Fu Guo, Funk Richard H W, Zhao Min
Department of Anatomy, Medical Theoretical Center, Technische Universität Dresden, Fetscherstrasse 74, 01307 Dresden, Germany.
Department of Dermatology and Department of Ophthalmology, Institute for Regenerative Cures, School of Medicine, University of California at Davis, Davis, CA 95817, USA.
Cell Mol Life Sci. 2014 Dec;71(23):4653-4663. doi: 10.1007/s00018-014-1632-1. Epub 2014 May 1.
Endogenous electric fields (EF) may provide an overriding cue for directional cell migration during wound closure. Perceiving a constant direction requires active sodium-hydrogen exchanger (pNHE3) at the leading edge of HEK 293 cells but its activation mechanism is not yet fully understood. Because protein kinase C (PKC) is required in electrotaxis, we asked whether NHE3 is activated by PKC during wound healing. Using pharmacological (pseudosubstrate and edelfosine) inhibition, we showed that inhibition of PKCη isoform impairs directional cell migration in HEK 293 cells in the presence of a persistent directional cue (0.25-0.3 V/mm of EF for 2 h). Further, we found that pNHE3 forms complexes with both PKCη and ɣ-tubulin, suggesting that these molecules may regulate the microtubule-organizing center. In addition, cellular pNHE3 content was reduced significantly when PKCη was inhibited during directional cell migration. Taken together, these data suggest that PKCη-dependent phosphorylation of NHE3 and the formation of pNHE3/PKCη/ɣ-tubulin complexes at the leading edge of the cell are required for directional cell migration in an EF.
内源性电场(EF)可能为伤口愈合过程中细胞的定向迁移提供一个主导线索。感知恒定方向需要在HEK 293细胞前缘存在活性钠氢交换体(pNHE3),但其激活机制尚未完全明确。由于趋电作用需要蛋白激酶C(PKC),我们探究了在伤口愈合过程中NHE3是否由PKC激活。通过药理学抑制(假底物和依地福新),我们发现,在存在持续定向线索(0.25 - 0.3 V/mm的EF,持续2小时)的情况下,抑制PKCη亚型会损害HEK 293细胞的定向细胞迁移。此外,我们发现pNHE3与PKCη和γ-微管蛋白均形成复合物,这表明这些分子可能调节微管组织中心。另外,在定向细胞迁移过程中抑制PKCη时,细胞内pNHE3含量显著降低。综上所述,这些数据表明,在EF中细胞定向迁移需要NHE3的PKCη依赖性磷酸化以及在细胞前缘形成pNHE3/PKCη/γ-微管蛋白复合物。