Lu Katherine Kun, Armstrong Shayn E, Ginnan Roman, Singer Harold A
Center for Cardiovascular Sciences, Albany Medical College, MC-8 47 New Scotland Ave., Albany, New York 12208, USA.
Am J Physiol Cell Physiol. 2005 Nov;289(5):C1343-50. doi: 10.1152/ajpcell.00064.2005. Epub 2005 Jun 8.
Cell adhesion-dependent activation of ERK1/2 has been linked functionally to focal adhesion dynamics. We previously reported that in adherent vascular smooth muscle (VSM) cells, CaMKII mediates ERK1/2 activation in response to Ca(2+)-mobilizing stimuli. In the present study, we tested whether CaMKII regulates ERK1/2 signaling in response to VSM cell adhesion. Using an antibody that specifically recognizes CaMKII autophosphorylated on Thr(287), we determined that CaMKII is rapidly activated (within 1 min) after the adherence of cells on multiple ECM substrates. Activation of CaMKII on fibronectin was unaffected in cells overexpressing focal adhesion kinase (FAK)-related nonkinase (FRNK), an endogenous inhibitor of FAK. Furthermore, CaMKII was rapidly and robustly activated in VSM cells plated on poly-l-lysine. These results suggest that adhesion-dependent CaMKII activation is integrin independent. Adhesion-dependent FAK activation on fibronectin was not affected in cells treated with the selective CaMKII inhibitor KN-93 (30 muM) or in cells in which the expression of CaMKII with small interfering RNA (siRNA) was suppressed, although tyrosine phosphorylation of paxillin was inhibited in CaMKII-delta(2)-suppressed cells. Sustained ERK1/2 activation that was dependent on FAK activation (inhibited by FRNK) was also attenuated by CaMKII inhibition or siRNA-mediated gene silencing. Rapid ERK1/2 activation that preceded FAK and paxillin activation was detected upon VSM cell adhesion to poly-l-lysine, and this response was inhibited by CaMKII gene silencing. These results indicate that integrin-independent CaMKII activation is an early signal during VSM cell adhesion that positively modulates ERK1/2 signaling through FAK-dependent and FAK-independent mechanisms.
细胞外信号调节激酶1/2(ERK1/2)的细胞黏附依赖性激活在功能上与黏着斑动力学相关。我们先前报道,在贴壁的血管平滑肌(VSM)细胞中,钙调蛋白激酶II(CaMKII)介导对钙动员刺激的ERK1/2激活。在本研究中,我们测试了CaMKII是否调节VSM细胞黏附时的ERK1/2信号传导。使用一种特异性识别苏氨酸(Thr)287位点自磷酸化的CaMKII的抗体,我们确定在细胞黏附到多种细胞外基质(ECM)底物后,CaMKII迅速被激活(1分钟内)。在过表达黏着斑激酶(FAK)相关非激酶(FRNK)(一种FAK的内源性抑制剂)的细胞中,纤连蛋白上CaMKII的激活不受影响。此外,接种在聚-L-赖氨酸上的VSM细胞中,CaMKII迅速且强烈地被激活。这些结果表明黏附依赖性CaMKII激活不依赖整合素。用选择性CaMKII抑制剂KN-93(30 μM)处理的细胞或通过小干扰RNA(siRNA)抑制CaMKII表达的细胞中,纤连蛋白上黏附依赖性FAK激活不受影响,尽管在CaMKII-δ(2)抑制的细胞中桩蛋白的酪氨酸磷酸化受到抑制。依赖FAK激活(被FRNK抑制)的持续ERK1/2激活也因CaMKII抑制或siRNA介导的基因沉默而减弱。VSM细胞黏附到聚-L-赖氨酸上时,检测到在FAK和桩蛋白激活之前的快速ERK1/2激活,并且该反应被CaMKII基因沉默抑制。这些结果表明,不依赖整合素的CaMKII激活是VSM细胞黏附过程中的早期信号,通过依赖FAK和不依赖FAK的机制正向调节ERK1/2信号传导。