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Inhibition of Ephrin B3-mediated survival signaling contributes to increased cell death response of non-small cell lung carcinoma cells after combined treatment with ionizing radiation and PKC 412

机译:在结合电离辐射和PKC 412处理后抑制Ephrin B3介导的存活信号有助于增加非小细胞肺癌细胞的细胞死亡反应

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摘要

Radiation therapy is frequently used to treat non-small cell lung cancers (NSCLCs). We have previously shown that a combination of ionizing radiation (IR) and the staurosporine analog PKC 412, but not Ro 31–8220, increases cell death in NSCLC cells. To identify genes involved in the enhancement of cell death, a total gene profiling in response to co-administration of (i) PKC 412 with IR, or (ii) Ro 31–8220 with IR was implemented. These combined treatments caused upregulation of 140 and 179 genes and downregulation of 253 and 425 genes, respectively. Certain genes were selected and verified by real-time quantitative PCR and, of these genes, robust suppression of Ephrin B3 expression was suggested as a possible cell death-inducing mechanism of combined treatment with IR and PKC 412. Indeed, silencing of Ephrin B3 using siRNA in NSCLC cells resulted in a major alteration of their morphology with an elongated phenotype, decreased proliferation and increased cell death signaling. Moreover, silencing of Ephrin B3 in combination with IR caused a decrease in IR-mediated G2-arrest, induced cellular senescence, inhibited MAPK ERK and p38 phosphorylation, and caused an upregulation of p27kip1 expression. Finally, silencing of Ephrin B3 in combination with IR sensitized U-1810 cells to IR-induced apoptosis. In conclusion, we identify and describe Ephrin B3 as a putative signaling molecule involved in the response of NSCLC cells to combined treatment with PKC 412 and ionizing radiation.
机译:放射疗法通常用于治疗非小细胞肺癌(NSCLC)。先前我们已经证明,电离辐射(IR)和星形孢菌素类似物PKC 412(而不是Ro 31–8220)的组合会增加NSCLC细胞的细胞死亡。为了鉴定与细胞死亡增强有关的基因,对(i)PKC 412与IR或(ii)Ro 31–8220与IR的共同给药进行了总基因谱分析。这些联合处理分别导致140和179个基因的上调和253和425个基因的下调。选择了某些基因并通过实时定量PCR进行了验证,其中这些基因中,强烈建议抑制Ephrin B3的表达是IR和PKC 412联合治疗的可能的细胞死亡诱导机制。 NSCLC细胞中的siRNA导致其形态的重大改变,具有延长的表型,减少的增殖和增加的细胞死亡信号传导。此外,Ephrin B3与IR的沉默导致IR介导的G2阻滞减少,诱导细胞衰老,抑制MAPK ERK和p38磷酸化,并导致p27 kip1 表达上调。最后,将Ep​​hrin B3与IR结合的沉默的U-1810细胞对IR诱导的细胞凋亡进行沉默。总之,我们确定并描述了Ephrin B3作为参与NSCLC细胞与PKC 412和电离辐射联合治疗的应答​​的推定信号分子。

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