Wallert Mark A, Hammes Daniel, Nguyen Tony, Kiefer Lea, Berthelsen Nick, Kern Andrew, Anderson-Tiege Kristina, Shabb John B, Muhonen Wallace W, Grove Bryon D, Provost Joseph J
Minnesota State University Moorhead, Department of Biosciences, Moorhead, MN, USA.
University of San Diego, Department of Chemistry and Biochemistry, San Diego, CA, USA.
Cell Signal. 2015 Mar;27(3):498-509. doi: 10.1016/j.cellsig.2015.01.002. Epub 2015 Jan 8.
The sodium hydrogen exchanger isoform one (NHE1) plays a critical role coordinating asymmetric events at the leading edge of migrating cells and is regulated by a number of phosphorylation events influencing both the ion transport and cytoskeletal anchoring required for directed migration. Lysophosphatidic acid (LPA) activation of RhoA kinase (Rock) and the Ras-ERK growth factor pathway induces cytoskeletal reorganization, activates NHE1 and induces an increase in cell motility. We report that both Rock I and II stoichiometrically phosphorylate NHE1 at threonine 653 in vitro using mass spectrometry and reconstituted kinase assays. In fibroblasts expressing NHE1 alanine mutants for either Rock (T653A) or ribosomal S6 kinase (Rsk; S703A) we show that each site is partially responsible for the LPA-induced increase in transport activity while NHE1 phosphorylation by either Rock or Rsk at their respective site is sufficient for LPA stimulated stress fiber formation and migration. Furthermore, mutation of either T653 or S703 leads to a higher basal pH level and a significantly higher proliferation rate. Our results identify the direct phosphorylation of NHE1 by Rock and suggest that both RhoA and Ras pathways mediate NHE1-dependent ion transport and migration in fibroblasts.
钠氢交换体同工型1(NHE1)在协调迁移细胞前沿的不对称事件中起关键作用,并受多种磷酸化事件调节,这些事件影响定向迁移所需的离子转运和细胞骨架锚定。溶血磷脂酸(LPA)激活RhoA激酶(Rock)和Ras-ERK生长因子途径可诱导细胞骨架重组,激活NHE1并导致细胞运动性增加。我们报告,使用质谱和重组激酶测定法,Rock I和II在体外均以化学计量方式使NHE1的苏氨酸653磷酸化。在表达针对Rock(T653A)或核糖体S6激酶(Rsk;S703A)的NHE1丙氨酸突变体的成纤维细胞中,我们表明每个位点部分负责LPA诱导的转运活性增加,而Rock或Rsk在其各自位点对NHE1的磷酸化足以促进LPA刺激的应力纤维形成和迁移。此外,T653或S703的突变导致基础pH值升高和增殖速率显著提高。我们的结果确定了Rock对NHE1的直接磷酸化,并表明RhoA和Ras途径均介导成纤维细胞中NHE1依赖性离子转运和迁移。