Lin Y, Chrest F J, Gabrielson E W
Johns Hopkins University School of Medicine Asthma and Allergy Center, Department of Pathology, Baltimore, Maryland 21224.
J Cell Physiol. 1992 Sep;152(3):646-53. doi: 10.1002/jcp.1041520325.
Staurosporine, a microbial-derived protein kinase inhibitor, reversibly blocked non-synchronized, replicating cultures of the human lung epithelial cell line EKVX in the G1 phase of cell cycle and inhibited DNA synthesis and cell replication. The mechanism of this cell-cycle arrest in EKVX cells by staurosporine was likely due to inhibition of protein kinase C (PKC) because: 1) dose-dependent inhibition of DNA synthesis occurred at levels of staurosporine that inhibit phosphorylation of PKC substrate, 2) inhibition of DNA synthesis was also seen after treatment with another PKC inhibitor H7, but not by the chemically similar HA1004, which has a relative inhibitory specificity for cAMP-dependent protein kinase, and 3) the DNA synthesis was not inhibited by specific tyrosine kinase inhibitors Genistein and Lavendustin A at concentrations that inhibit tyrosine kinase activity. Removal of staurosporine from cell culture media resulted in a rebound in PKC activity and synchronized DNA synthesis in EKVX cultures. The reversibility of the inhibition was noted even after 5 days of treatment with staurosporine, and DNA synthesis remained synchronized for at least two rounds of cell replication after removal of staurosporine. Flow cytometric analysis confirmed that more than 90% of the cell population was blocked in the G1 phase after cells were treated with staurosporine for 24 h. Agents such as staurosporine may be useful for synchronizing cell populations to study cell-cycle specific biochemical events important for the regulation of cell replication in the EKVX cell line.
星形孢菌素是一种微生物来源的蛋白激酶抑制剂,它能可逆地阻断人肺上皮细胞系EKVX的非同步化、正在复制的培养物于细胞周期的G1期,抑制DNA合成和细胞复制。星形孢菌素使EKVX细胞发生这种细胞周期阻滞的机制可能是由于抑制了蛋白激酶C(PKC),原因如下:1)在抑制PKC底物磷酸化的星形孢菌素水平上出现了DNA合成的剂量依赖性抑制;2)在用另一种PKC抑制剂H7处理后也观察到了DNA合成的抑制,但化学结构相似的HA1004(对环磷酸腺苷依赖性蛋白激酶具有相对抑制特异性)却未产生这种抑制;3)在抑制酪氨酸激酶活性的浓度下,特异性酪氨酸激酶抑制剂染料木黄酮和拉文达ustin A并未抑制DNA合成。从细胞培养基中去除星形孢菌素后,EKVX培养物中的PKC活性出现反弹,DNA合成恢复同步。即使在用星形孢菌素处理5天后,仍可观察到抑制作用的可逆性,并且在去除星形孢菌素后,DNA合成至少在两轮细胞复制中保持同步。流式细胞术分析证实,在用星形孢菌素处理细胞24小时后,超过90%的细胞群体被阻滞在G1期。像星形孢菌素这样的试剂可能有助于使细胞群体同步化,以研究对EKVX细胞系中细胞复制调控至关重要的细胞周期特异性生化事件。