Sadoshima J, Qiu Z, Morgan J P, Izumo S
Cardiovascular Research Center, Division of Cardiology, University of Michigan Medical Center, Ann Arbor 48109-0644, USA.
EMBO J. 1996 Oct 15;15(20):5535-46.
Hypotonic stress causes rapid cell swelling and initiates various cellular adaptive processes. However, it is unknown how cells initially sense low osmolarity and convert it into intracellular signals. We investigated the signal transduction mechanism initiated by hypotonic cell swelling in cardiac myocytes using c-fos expression as a nuclear marker. Treatment of myocytes with hypotonic culture media rapidly induced c-fos expression, whereas hypertonic stress had no effect. Transfection of c-fos reporter gene constructs suggested that the hypotonic stress response element maps to the serum response element of the c-fos promoter. Hypotonic stress immediately (within 5 s) activated tyrosine kinase activity, while activation of ERK1/2 peaked at 5 min. Stress-activated kinase (JNK1) was modestly activated at 15 min, whereas HOG1 like kinase (p38) was not activated by hypotonic stress. Extensive pharmacological studies indicated that only tyrosine kinase inhibitors suppressed the hypotonic swelling-induced c-fos expression. The effect of hypotonic stress was mimicked by chlorpromazine, which is known to cause membrane deformation. These results suggest that the signaling mechanism of hypotonic stress is distinct from that of hyperosmolar stress in mammalian cells. Tyrosine kinase activation is the earliest detectable cell response and plays an essential role in hypotonic swelling-induced ERK1/2 activation and c-fos expression.
低渗应激会导致细胞迅速肿胀,并引发各种细胞适应性过程。然而,细胞最初如何感知低渗透压并将其转化为细胞内信号尚不清楚。我们使用c-fos表达作为核标记,研究了心肌细胞中低渗性细胞肿胀引发的信号转导机制。用低渗培养基处理心肌细胞可迅速诱导c-fos表达,而高渗应激则无此作用。c-fos报告基因构建体的转染表明,低渗应激反应元件定位于c-fos启动子的血清反应元件。低渗应激立即(5秒内)激活酪氨酸激酶活性,而ERK1/2的激活在5分钟时达到峰值。应激激活激酶(JNK1)在15分钟时被适度激活,而HOG1样激酶(p38)未被低渗应激激活。广泛的药理学研究表明,只有酪氨酸激酶抑制剂能抑制低渗肿胀诱导的c-fos表达。已知可引起膜变形的氯丙嗪模拟了低渗应激的作用。这些结果表明,在哺乳动物细胞中,低渗应激的信号传导机制与高渗应激不同。酪氨酸激酶激活是最早可检测到的细胞反应,在低渗肿胀诱导的ERK1/2激活和c-fos表达中起重要作用。