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首页> 外文期刊>Translational Oncology >MK-8776, a novel Chk1 inhibitor, exhibits an improved radiosensitizing effect compared to UCN-01 by exacerbating radiation-induced aberrant mitosis
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MK-8776, a novel Chk1 inhibitor, exhibits an improved radiosensitizing effect compared to UCN-01 by exacerbating radiation-induced aberrant mitosis

机译:与UCN-01相比,新型Chk1抑制剂MK-8776通过加重放射线诱导的异常有丝分裂而表现出改善的放射增敏作用

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Checkpoint kinase 1 (Chk1) is an evolutionarily conserved serine/threonine kinase that plays an important role in G 2 /M checkpoint signaling. Here, we evaluate the radiosensitizing effects of a novel selective Chk1 inhibitor MK-8776, comparing its efficacy with a first-generation Chk1 inhibitor UCN-01, and attempt to elucidate the mechanism of radiosensitization. In a clonogenic survival assay, MK-8776 demonstrated a more pronounced radiosensitizing effect than UCN-01, with lower cytotoxicity. Importantly, radiosensitization by MK-8776 can be achieved at doses as low as 2.5 Gy, which is a clinically applicable irradiation dose. MK-8776, but not UCN-01, exacerbated mitotic catastrophe (MC) and centrosome abnormalities, without affecting repair kinetics of DNA double strand breaks. Furthermore, live-cell imaging revealed that MK-8776 significantly abrogated the radiation-induced G 2 /M checkpoint, prolonged the mitotic phase, and enhanced aberrant mitosis. This suggests that Chk1 inhibition by MK-8776 activates a spindle assembly checkpoint and increases mitotic defects in irradiated EMT6 cells. In conclusion, we have shown that, at minimally toxic concentrations, MK-8776 enhances radiation-induced cell death through the enhancement of aberrant mitosis and MC, without affecting DNA damage repair.
机译:检查点激酶1(Chk1)是一种进化上保守的丝氨酸/苏氨酸激酶,在G 2 / M检查点信号传导中起重要作用。在这里,我们评估了新型选择性Chk1抑制剂MK-8776的放射增敏作用,将其与第一代Chk1抑制剂UCN-01的功效进行了比较,并试图阐明放射增敏的机理。在克隆形成存活测定中,MK-8776表现出比UCN-01更明显的放射增敏作用,且细胞毒性较低。重要的是,可以以低至2.5 Gy的剂量实现MK-8776的放射增敏作用,该剂量是临床适用的辐射剂量。 MK-8776(而不是UCN-01)加剧了有丝分裂灾难(MC)和中心体异常,而不影响DNA双链断裂的修复动力学。此外,活细胞成像显示MK-8776显着消除了辐射诱导的G 2 / M检查点,延长了有丝分裂期,并增强了异常有丝分裂。这表明MK-8776对Chk1的抑制作用激活了纺锤体装配检查点,并增加了受辐射的EMT6细胞中的有丝分裂缺陷。总之,我们已经表明,在最低毒性浓度下,MK-8776通过增强异常的有丝分裂和MC来增强辐射诱导的细胞死亡,而不会影响DNA损伤修复。

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