Mercure Melissa Z, Ginnan Roman, Singer Harold A
Center for Cardiovascular Sciences, Albany Medical College, Albany, NY 12208, USA.
Am J Physiol Cell Physiol. 2008 Jun;294(6):C1465-75. doi: 10.1152/ajpcell.90638.2007. Epub 2008 Apr 2.
Previous studies indicate involvement of the multifunctional Ca2+/calmodulin-dependent protein kinase II (CaMKII) in vascular smooth muscle (VSM) cell migration. In the present study, molecular loss-of-function studies were used specifically to assess the role of the predominant CaMKII delta2 isoform on VSM cell migration using a scratch wound healing assay. Targeted CaMKII delta2 knockdown using siRNA or inhibition of activity by overexpressing a kinase-negative mutant resulted in attenuation of VSM cell migration. Temporal and spatial assessments of kinase autophosphorylation indicated rapid and transient activation in response to wounding, in addition to a sustained activation in the leading edge of migrating and spreading cells. Furthermore, siRNA-mediated suppression of CaMKII delta2 resulted in the inhibition of wound-induced Rac activation and Golgi reorganization, and disruption of leading edge morphology, indicating an important function for CaMKII delta2 in regulating VSM cell polarization. Numerous previous reports link activation of CaMKII to ERK1/2 signaling in VSM. Wound-induced ERK1/2 activation was also found to be dependent on CaMKII; however, ERK activity did not account for effects of CaMKII in regulating Golgi polarization, indicating alternative mechanisms by which CaMKII affects the complex events involved in cell migration. Wounding a VSM cell monolayer results in CaMKII delta2 activation, which positively regulates VSM cell polarization and downstream signaling, including Rac and ERK1/2 activation, leading to cell migration.
先前的研究表明多功能的Ca2+/钙调蛋白依赖性蛋白激酶II(CaMKII)参与血管平滑肌(VSM)细胞迁移。在本研究中,具体采用分子功能丧失研究,通过划痕伤口愈合试验评估主要的CaMKII δ2亚型对VSM细胞迁移的作用。使用小干扰RNA(siRNA)靶向敲低CaMKII δ2或过表达激酶阴性突变体抑制其活性,均导致VSM细胞迁移减弱。对激酶自身磷酸化的时空评估表明,除了在迁移和铺展细胞的前沿持续激活外,伤口刺激可导致快速短暂的激活。此外,siRNA介导的CaMKII δ2抑制导致伤口诱导的Rac激活和高尔基体重组受到抑制,以及前沿形态破坏,表明CaMKII δ2在调节VSM细胞极化中具有重要作用。此前众多报道将CaMKII的激活与VSM中的细胞外信号调节激酶1/2(ERK1/2)信号通路联系起来。还发现伤口诱导的ERK1/2激活依赖于CaMKII;然而,ERK活性并不能解释CaMKII在调节高尔基体极化中的作用,这表明CaMKII影响细胞迁移相关复杂事件存在其他机制。VSM细胞单层受伤会导致CaMKII δ2激活,其正向调节VSM细胞极化和下游信号通路,包括Rac和ERK1/2激活,从而导致细胞迁移。