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环己烯衍生物 MC-3129 通过 RhoA/ROCK1/PTEN/PI3K/Akt 通路介导线粒体易位来发挥抗白血病活性。

The cyclohexene derivative MC-3129 exhibits antileukemic activity via RhoA/ROCK1/PTEN/PI3K/Akt pathway-mediated mitochondrial translocation of cofilin.

机构信息

College of Pharmacy, Third Military Medical University, 400038, Chongqing, China.

出版信息

Cell Death Dis. 2018 May 29;9(6):656. doi: 10.1038/s41419-018-0689-4.

Abstract

The effects of MC-3129, a synthetic cyclohexene derivative, on cell viability and apoptosis have been investigated in human leukemia cells. Exposure of leukemia cells to MC-3129 led to the inhibition of cell viability and induction of apoptosis through the dephosphorylation and mitochondrial translocation of cofilin. A mechanistic study revealed that interruption of the RhoA/ROCK1/PTEN/PI3K/Akt signaling pathway plays a crucial role in the MC-3129-mediated dephosphorylation and mitochondrial translocation of cofilin and induction of apoptosis. Our in vivo study also showed that the MC-3129-mediated inhibition of the tumor growth in a mouse leukemia xenograft model is associated with the interruption of ROCK1/PTEN/PI3K/Akt signaling and apoptosis. Molecular docking suggested that MC-3129 might activate the RhoA/ROCK1 pathway by targeting LPAR2. Collectively, these findings suggest a hierarchical model, in which the induction of apoptosis by MC-3129 primarily results from the activation of RhoA/ROCK1/PTEN and inactivation of PI3K/Akt, leading to the dephosphorylation and mitochondrial translocation of cofilin, and culminating in cytochrome c release, caspase activation, and apoptosis. Our study reveals a novel role for RhoA/ROCK1/PTEN/PI3K/Akt signaling in the regulation of mitochondrial translocation of cofilin and apoptosis and suggests MC-3129 as a potential drug for the treatment of human leukemia.

摘要

MC-3129,一种合成的环己烯衍生物,对人白血病细胞的细胞活力和凋亡的影响进行了研究。白血病细胞暴露于 MC-3129 导致细胞活力的抑制和凋亡的诱导,通过 cofilin 的去磷酸化和线粒体易位。机制研究表明,RhoA/ROCK1/PTEN/PI3K/Akt 信号通路的中断在 MC-3129 介导的 cofilin 去磷酸化和线粒体易位以及诱导凋亡中起着关键作用。我们的体内研究也表明,MC-3129 介导的在小鼠白血病异种移植模型中的肿瘤生长抑制与 ROCK1/PTEN/PI3K/Akt 信号和凋亡的中断有关。分子对接表明,MC-3129 可能通过靶向 LPAR2 激活 RhoA/ROCK1 通路。总的来说,这些发现表明了一个层次模型,其中 MC-3129 诱导的凋亡主要源于 RhoA/ROCK1/PTEN 的激活和 PI3K/Akt 的失活,导致 cofilin 的去磷酸化和线粒体易位,并最终导致细胞色素 c 释放、半胱天冬酶激活和凋亡。我们的研究揭示了 RhoA/ROCK1/PTEN/PI3K/Akt 信号在调节线粒体易位和凋亡中的新作用,并表明 MC-3129 可能是治疗人类白血病的潜在药物。

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