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应变激活牛主动脉平滑肌细胞增殖和排列:应变依赖性及蛋白激酶A和C信号通路作用的研究

Strain activation of bovine aortic smooth muscle cell proliferation and alignment: study of strain dependency and the role of protein kinase A and C signaling pathways.

作者信息

Mills I, Cohen C R, Kamal K, Li G, Shin T, Du W, Sumpio B E

机构信息

Department of Surgery, Yale University School of Medicine, New Haven, Connecticut 06510, USA.

出版信息

J Cell Physiol. 1997 Mar;170(3):228-34. doi: 10.1002/(SICI)1097-4652(199703)170:3<228::AID-JCP2>3.0.CO;2-Q.

Abstract

Smooth muscle cell (SMC) phenotype can be altered by physical forces as demonstrated by cyclic strain-induced changes in proliferation, orientation, and secretion of macromolecules. However, the magnitude of strain required and the intracellular coupling pathways remain ill defined. To examine the strain requirements for SMC proliferation, we selectively seeded bovine aortic SMC either on the center or periphery of silastic membranes which were deformed with 150 mm Hg vacuum (0-7% center; 7-24% periphery). SMC located in either the center or peripheral regions showed enhanced proliferation compared to cells grown under the absence of cyclic strain. Moreover, SMC located in the center region demonstrated significantly (P < 0.005) greater proliferation as compared to those in the periphery. In contrast, SMC exposed to high strain (7-24%) demonstrated alignment perpendicular to the strain gradient, whereas SMC in the center (0-7%) remained aligned randomly. To determine the mechanisms of these phenomena, we examined the effect of cyclic strain on bovine aortic SMC signaling pathways. We observed strain-induced stimulation of the cyclic AMP pathway including adenylate cyclase activity and cyclic AMP accumulation. In addition, exposure of SMC to cyclic strain caused a significant increase in protein kinase C (PKC) activity and enzyme translocation from the cytosol to a particulate fraction. Further study was conducted to examine the effect of strain magnitude on signaling, particularly protein kinase A (PKA) activity as well as cAMP response element (CRE) binding protein levels. We observed significantly (P < 0.05) greater PKA activity and CRE binding protein levels in SMC located in the center as compared to the peripheral region. However, inhibition of PKA (with 10 microM Rp-cAMP) or PKC (with 5-20 ng/ml staurosporine) failed to alter either the strain-induced increase in SMC proliferation or alignment. These data characterize the strain determinants for activation of SMC proliferation and alignment. Although strain activated both the AC/cAMP/PKA and the PKC pathways in SMC, singular inhibition of PKA and PKC failed to prevent strain-induced alignment and proliferation, suggesting either their lack of involvement or the multifactorial nature of these responses.

摘要

平滑肌细胞(SMC)的表型可因物理力而改变,循环应变诱导的增殖、取向及大分子分泌变化就证明了这一点。然而,所需应变的大小以及细胞内偶联途径仍不明确。为了研究SMC增殖所需的应变,我们将牛主动脉SMC选择性地接种在硅橡胶膜的中心或周边,这些膜在150毫米汞柱真空下变形(中心为0 - 7%;周边为7 - 24%)。与在无循环应变条件下生长的细胞相比,位于中心或周边区域的SMC增殖均增强。此外,位于中心区域的SMC与周边区域的相比,增殖显著更高(P < 0.005)。相反,暴露于高应变(7 - 24%)的SMC表现出与应变梯度垂直排列,而中心区域(0 - 7%)的SMC仍随机排列。为了确定这些现象的机制,我们研究了循环应变对牛主动脉SMC信号通路的影响。我们观察到应变诱导的环磷酸腺苷(cAMP)途径的刺激,包括腺苷酸环化酶活性和cAMP积累。此外,SMC暴露于循环应变导致蛋白激酶C(PKC)活性显著增加以及酶从胞质溶胶转位至颗粒部分。进一步研究以检查应变大小对信号传导的影响,特别是蛋白激酶A(PKA)活性以及cAMP反应元件(CRE)结合蛋白水平。我们观察到,与周边区域相比,位于中心的SMC中PKA活性和CRE结合蛋白水平显著更高(P < 0.05)。然而,抑制PKA(用10微摩尔Rp - cAMP)或PKC(用5 - 20纳克/毫升星形孢菌素)未能改变应变诱导的SMC增殖增加或排列。这些数据表征了激活SMC增殖和排列的应变决定因素。尽管应变激活了SMC中的AC/cAMP/PKA和PKC途径,但单独抑制PKA和PKC未能阻止应变诱导的排列和增殖,这表明它们要么不参与,要么这些反应具有多因素性质。

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