首页> 外文OA文献 >Extracellular signal-regulated kinase and c-Jun NH2-terminal kinase activation by mechanical stretch is integrin-dependent and matrix-specific in rat cardiac fibroblasts.
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Extracellular signal-regulated kinase and c-Jun NH2-terminal kinase activation by mechanical stretch is integrin-dependent and matrix-specific in rat cardiac fibroblasts.

机译:通过机械牵张的细胞外信号调节激酶和c-Jun NH2末端激酶激活在大鼠心脏成纤维细胞中是整合素依赖性和基质特异性的。

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摘要

Integrins, which connect the cytoskeleton to the extracellular matrix and mediate a variety of signaling cascades, may transduce mechanical stimuli into biochemical signals. We studied integrin- and matrix-dependent activation of extracellular signal-regulated kinase (ERK2), c-Jun NH2-terminal kinase (JNK1), and p38 in response to 4% static biaxial stretch in rat cardiac fibroblasts. ERK2 and JNK1, but not p38, were rapidly activated by stretch when the fibroblasts were allowed to synthesize their own matrices. When the cells were limited to specific matrix substrates, ERK2 and JNK1 were differentially activated: ERK2 was only activated when the cells were plated on fibronectin, while JNK1 was activated when the cells were plated on fibronectin, vitronectin, or laminin. Plating cells on collagen before stretching did not activate either kinase. Adhesion to all matrices was integrin-dependent because it could be blocked by inhibitors of specific integrins. ERK2 activation could be blocked with a combination of anti-alpha4 and -alpha5 antibodies and an arginine-glycine-aspartic acid (RGD) peptide, while the antibodies or peptide used separately failed to block ERK2 activation. This result suggests that at least two integrins, alpha4beta1 and an RGD-directed, non-alpha5beta1 integrin, activate ERK2 in response to mechanical stimulation. Activation of JNK1 could not be blocked with the inhibitors, suggesting that an RGD-independent integrin or integrins other than alpha4beta1 can activate JNK1 in cells adherent to fibronectin. This study demonstrates that integrins act as mechanotransducers, providing insight into potential mechanisms for in vivo responses to mechanical stimuli.
机译:将细胞骨架连接至细胞外基质并介导多种信号转导级联的整联蛋白可以将机械刺激转化为生化信号。我们研究了对大鼠心脏成纤维细胞中4%静态双轴拉伸的细胞外信号调节激酶(ERK2),c-Jun NH2末端激酶(JNK1)和p38的整合素和基质依赖性激活。当允许成纤维细胞合成自己的基质时,ERK2和JNK1而非p38被拉伸迅速激活。当细胞限于特定的基质底物时,ERK2和JNK1被差异激活:仅当将细胞铺在纤连蛋白上时,ERK2才被激活,而当细胞在纤连蛋白,玻连蛋白或层粘连蛋白上时,JNK1被激活。拉伸前在胶原蛋白上铺板细胞不会激活任何一种激酶。对所有基质的粘附都是整联蛋白依赖性的,因为它可以被特定整联蛋白的抑制剂所阻断。可以使用抗α4和-α5抗体以及精氨酸-甘氨酸-天冬氨酸(RGD)肽的组合来阻断ERK2的激活,而单独使用的抗体或肽不能阻断ERK2的激活。该结果表明,至少两种整联蛋白α4beta1和RGD定向的非α5beta1整联蛋白响应机械刺激而激活ERK2。 JNK1的激活不能被抑制剂阻断,这表明不依赖RGD的整联蛋白或除alpha4beta1以外的整联蛋白可以激活粘附于纤连蛋白的细胞中的JNK1。这项研究表明整联蛋白充当机械转导者,提供了对体内对机械刺激反应的潜在机制的见解。

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