首页> 美国卫生研究院文献>other >Jaridonin-induced G2/M phase arrest in human esophageal cancer cells is caused by reactive oxygen species-dependent Cdc2-tyr15 phosphorylation via ATM–Chk1/2–Cdc25C pathway
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Jaridonin-induced G2/M phase arrest in human esophageal cancer cells is caused by reactive oxygen species-dependent Cdc2-tyr15 phosphorylation via ATM–Chk1/2–Cdc25C pathway

机译:Jaridonin诱导的人类食管癌细胞G2 / M期阻滞是由依赖于活性氧的Cdc2-tyr15磷酸化通过ATM–Chk1 / 2–Cdc25C途径引起的

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摘要

Jaridonin, a novel diterpenoid from Isodon rubescens, has been shown previously to inhibit proliferation of esophageal squamous cancer cells (ESCC) through G2/M phase cell cycle arrest. However, the involved mechanism is not fully understood. In this study, we found that the cell cycle arrest by Jaridonin was associated with the increased expression of phosphorylation of ATM at Ser1981 and Cdc2 at Tyr15. Jaridonin also resulted in enhanced phosphorylation of Cdc25C via the activation of checkpoint kinases Chk1 and Chk2, as well as in increased phospho-H2A.X (Ser139), which is known to be phosphorylated by ATM in response to DNA damage. Furthermore, Jaridonin-mediated alterations in cell cycle arrest were significantly attenuated in the presence of NAC, implicating the involvement of ROS in Jaridonin's effects. On the other hand, addition of ATM inhibitors reversed Jaridonin-related activation of ATM and Chk1/2 as well as phosphorylation of Cdc25C, Cdc2 and H2A.X and G2/M phase arrest. In conclusion, these findings identified that Jaridonin-induced cell cycle arrest in human esophageal cancer cells is associated with ROS-mediated activation of ATM–Chk1/2–Cdc25C pathway.
机译:Jaridonin是一种来自异工藤的新型二萜,先前已显示可通过G2 / M期细胞周期阻滞抑制食管鳞状癌细胞(ESCC)的增殖。但是,所涉及的机制尚不完全清楚。在这项研究中,我们发现Jaridonin阻止的细胞周期与Ser1981处ATM和Tyr15处Cdc2磷酸化表达增加有关。茉莉酮还可以通过激活检查点激酶Chk1和Chk2来增强Cdc25C的磷酸化作用,并导致磷酸化H2A.X(Ser139)的增加,而磷酸化H2A.X(Ser139)已知会被ATM磷酸化以响应DNA损伤。此外,在存在NAC的情况下,Jaridonin介导的细胞周期停滞改变明显减弱,这说明ROS参与了Jaridonin的作用。另一方面,添加ATM抑制剂可逆转与Jaridonin相关的ATM和Chk1 / 2活化,以及Cdc25C,Cdc2和H2A.X的磷酸化以及G2 / M相停滞。总之,这些发现表明,人食管癌细胞中的加里多宁诱导的细胞周期停滞与ROS介导的ATM–Chk1 / 2–Cdc25C途径的激活有关。

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