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首页> 外文期刊>Oncogene >The radioresistance biological function of the SCF|[sol]|kit signaling pathway is mediated by the zinc-finger transcription factor Slug
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The radioresistance biological function of the SCF|[sol]|kit signaling pathway is mediated by the zinc-finger transcription factor Slug

机译:SCF | [sol] | kit信号传导途径的抗辐射生物学功能由锌指转录因子Slug介导

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Radiation-induced destruction of the hematopoietic system is the primary cause of death based on the findings that transfer of normal bone marrow cells prevents death from lethal irradiation. The stem cell factor-c-kit signaling pathway (SCF/c-kit) has been previously implicated in the hematopoietic recovery which prevents death from lethal irradiation, but the molecular mechanisms that mediate this biological effect are unknown. Since mutations on SCF, c-kit and Slug genes have a similar phenotype in mice, we examined if Slug could complement the radiosensitivity of kit-deficient mice. In this report, we show that Slug acts as a radioprotection agent as lack of Slug results in increased radiosensitivity. This effect cannot be recovered by activating SCF/c-kit in lethally irradiated Slug-deficient mice, as SCF-treated mice did not demonstrate stimulation of hematopoietic recovery leading to survival of the Slug-deficient mice. We found that we could complement the hematopoietic failure in lethally irradiated c-kit-deficient mice by transducing them with a TAT-Slug protein. We conclude that the zinc-finger transcription factor Slug is absolutely necessary for survival from lethal irradiation and identify Slug as the molecular target that mediates the radioprotection through SCF/c-kit. These results indicate that Slug may be a molecular component conferring radioresistance to cancer cells.
机译:辐射诱导的造血系统破坏是导致死亡的主要原因,这一发现基于正常骨髓细胞转移可防止致命性辐射导致死亡的发现。干细胞因子-c-kit信号转导途径(SCF / c-kit)先前已牵涉到造血恢复中,阻止了致死性辐射的死亡,但介导这种生物学效应的分子机制尚不清楚。由于SCF,c-kit和Slug基因上的突变在小鼠中具有相似的表型,因此我们检查了Slug是否可以补充缺乏试剂盒的小鼠的放射敏感性。在此报告中,我们显示Slug充当放射防护剂,因为Slug的缺乏会导致放射敏感性增加。通过激活经致死性辐照的Slug-缺陷小鼠中的SCF / c-kit不能恢复该效果,因为用SCF处理的小鼠未显示出刺激造血功能的恢复,从而导致Slug-缺陷小鼠的存活。我们发现,我们可以通过用TAT-Slug蛋白转导致命性照射的c-kit缺陷小鼠来补充造血功能衰竭。我们得出结论,锌指转录因子Slug对于从致命辐射中存活下来绝对必要,并确定Slug是介导通过SCF / c-kit进行放射防护的分子靶标。这些结果表明,Slug可能是赋予癌细胞抗辐射性的分子成分。

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