Sadoshima J, Izumo S
Molecular Medicine Division, Beth Israel Hospital.
EMBO J. 1993 Apr;12(4):1681-92. doi: 10.1002/j.1460-2075.1993.tb05813.x.
It is well known that external load plays a critical role in determining cardiac muscle mass and its phenotype, but little is known as to how mechanical load is transduced into intracellular signals regulating gene expression. To address this question we analyzed the 'mechano-transcription' coupling process using an in vitro model of load-induced cardiac hypertrophy, in which a stretch of rat cardiac myocytes, grown on a deformable substrate, causes a rapid induction of immediate-early genes followed by growth (hypertrophic) response. We report here that cell stretch rapidly activates a plethora of second messenger pathways, including tyrosine kinases, p21ras, mitogen-activated protein (MAP) kinases, S6 kinases (pp90RSK), protein kinase C, phospholipase C, phospholipase D, and probably the phospholipase A2 and P450 pathways. In contrast, the cAMP pathway is not activated significantly by stretch. The signals generated by these second messengers appear to converge into activation of the p67SRF-p62TCF complex via the serum response element, causing induction of c-fos. The stretch response may involve an autocrine or paracrine mechanism, because stretch-conditioned medium, when transferred to non-stretched myocytes, mimicked the effect of stretch. These results indicate that mechanical load causes rapid activation of multiple second messenger systems, which may in turn initiate a cascade of hypertrophic response of cardiac myocytes.
众所周知,外部负荷在决定心肌质量及其表型方面起着关键作用,但对于机械负荷如何转化为调节基因表达的细胞内信号却知之甚少。为了解决这个问题,我们使用负荷诱导心肌肥大的体外模型分析了“机械-转录”偶联过程,在该模型中,在可变形基质上生长的大鼠心肌细胞受到拉伸,会迅速诱导早期即刻基因,随后引发生长(肥大)反应。我们在此报告,细胞拉伸会迅速激活大量第二信使途径,包括酪氨酸激酶、p21ras、丝裂原活化蛋白(MAP)激酶、S6激酶(pp90RSK)、蛋白激酶C、磷脂酶C、磷脂酶D,可能还有磷脂酶A2和P450途径。相比之下,cAMP途径不会因拉伸而显著激活。这些第二信使产生的信号似乎通过血清反应元件汇聚到p67SRF-p62TCF复合物的激活中,从而导致c-fos的诱导。拉伸反应可能涉及自分泌或旁分泌机制,因为拉伸条件培养基转移到未拉伸的心肌细胞时,模拟了拉伸的效果。这些结果表明,机械负荷会导致多个第二信使系统的快速激活,这反过来可能启动心肌细胞肥大反应的级联反应。