Grossi Mario, Bhattachariya Anirban, Nordström Ina, Turczyńska Karolina M, Svensson Daniel, Albinsson Sebastian, Nilsson Bengt-Olof, Hellstrand Per
Department of Experimental Medical Science, Lund University, Lund, Sweden.
J Cell Physiol. 2017 Nov;232(11):3088-3102. doi: 10.1002/jcp.25760. Epub 2017 Mar 31.
Modulation from contractile to synthetic phenotype of vascular smooth muscle cells is a central process in disorders involving compromised integrity of the vascular wall. Phenotype modulation has been shown to include transition from voltage-dependent toward voltage-independent regulation of the intracellular calcium level, and inhibition of non-voltage dependent calcium influx contributes to maintenance of the contractile phenotype. One possible mediator of calcium-dependent signaling is the FAK-family non-receptor protein kinase Pyk2, which is activated by a number of stimuli in a calcium-dependent manner. We used the Pyk2 inhibitor PF-4594755 and Pyk2 siRNA to investigate the role of Pyk2 in phenotype modulation in rat carotid artery smooth muscle cells and in cultured intact arteries. Pyk2 inhibition promoted the expression of smooth muscle markers at the mRNA and protein levels under stimulation by FBS or PDGF-BB and counteracted phenotype shift in cultured intact carotid arteries and balloon injury ex vivo. During long-term (24-96 hr) treatment with PF-4594755, smooth muscle markers increased before cell proliferation was inhibited, correlating with decreased KLF4 expression and differing from effects of MEK inhibition. The Pyk2 inhibitor reduced Orai1 and preserved SERCA2a expression in carotid artery segments in organ culture, and eliminated the inhibitory effect of PDGF stimulation on L-type calcium channel and large-conductance calcium-activated potassium channel expression in carotid cells. Basal intracellular calcium level, calcium wave activity, and store-operated calcium influx were reduced after Pyk2 inhibition of growth-stimulated cells. Pyk2 inhibition may provide an interesting approach for preserving vascular smooth muscle differentiation under pathophysiological conditions.
血管平滑肌细胞从收缩表型向合成表型的转变是涉及血管壁完整性受损的疾病中的核心过程。表型调节已被证明包括细胞内钙水平从电压依赖性调节向电压非依赖性调节的转变,抑制非电压依赖性钙内流有助于维持收缩表型。钙依赖性信号传导的一种可能介质是FAK家族非受体蛋白激酶Pyk2,它以钙依赖性方式被多种刺激激活。我们使用Pyk2抑制剂PF-4594755和Pyk2 siRNA来研究Pyk2在大鼠颈动脉平滑肌细胞和培养的完整动脉表型调节中的作用。Pyk2抑制在FBS或PDGF-BB刺激下促进了平滑肌标志物在mRNA和蛋白质水平的表达,并抵消了培养的完整颈动脉和离体球囊损伤中的表型转变。在用PF-4594755进行长期(24-96小时)治疗期间,平滑肌标志物在细胞增殖受到抑制之前增加,这与KLF4表达降低相关,且不同于MEK抑制的作用。Pyk2抑制剂降低了器官培养的颈动脉段中的Orai1并保留了SERCA2a的表达,并消除了PDGF刺激对颈动脉细胞中L型钙通道和大电导钙激活钾通道表达的抑制作用。Pyk2抑制生长刺激细胞后,基础细胞内钙水平、钙波活动和储存操纵性钙内流降低。Pyk2抑制可能为在病理生理条件下维持血管平滑肌分化提供一种有趣的方法。