首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >The radioprotector Bowman-Birk proteinase inhibitor stimulates DNA repair via epidermal growth factor receptor phosphorylation and nuclear transport.
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The radioprotector Bowman-Birk proteinase inhibitor stimulates DNA repair via epidermal growth factor receptor phosphorylation and nuclear transport.

机译:放射防护剂Bowman-Birk蛋白酶抑制剂通过表皮生长因子受体磷酸化和核转运刺激DNA修复。

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BACKGROUND AND PURPOSE: The purpose of the study was to elucidate the underlying molecular mechanism of the radioprotector, Bowman-Birk proteinase inhibitor (BBI), and its interaction with EGFR nuclear transport. MATERIALS AND METHODS: Molecular effects of BBI at the level of EGFR responses were investigated in vitro with wt. TP53 bronchial carcinoma cell line A549 and the transformed fibroblast cell line HH4dd characterized by a mt. TP53. EGFR and associated protein expression were quantified by Western blotting and confocal microscopy in the cytoplasmic and nuclear cell fraction. Residual DNA double strand breaks were quantified by means of a gammaH(2)AX focus assay. RESULTS: Both irradiation and BBI-treatment stimulated EGFR internalization into the cytoplasm. This process involved src kinase activation, EGFR phosphorylation at Y845, and caveolin 1 phosphorylation at Y14. EGFR internalization correlated with nuclear EGFR transport and was associated with phosphorylation of EGFR at T654. Nuclear EGFRwas linked with DNA-PK complex formation and activation. Furthermore, nuclear EGFR was found in complex with TP53, phosphorylated at S15, and with MDC1, following irradiation and BBI treatment. It is noteworthy that MDC1 was strongly decreased in the nuclear EGFR complex in cells with mt. TP53 and failed to be increased by either BBI treatment or irradiation. Interestingly, in cells with mt. TP53 the BBI mediated stimulation of double strand break repair was hampered significantly. CONCLUSION: These data indicate that BBI stimulates complex formation between EGFR, TP53 and MDC1 protein in wt. TP53 cells only. Since MDC1 is essential for recruitment of DNA repair foci, this observation may explain how BBI selectively stimulated repair of DNA double strand breaks in wt. TP53 cells.
机译:背景与目的:本研究的目的是阐明放射防护剂Bowman-Birk蛋白酶抑制剂(BBI)的潜在分子机制,及其与EGFR核转运的相互作用。材料与方法:在体外用wt。 TP53支气管癌细胞系A549和转化的成纤维细胞系HH4dd以mt为特征。 TP53。通过蛋白质印迹和共聚焦显微镜在细胞质和核细胞级分中定量EGFR和相关蛋白的表达。残留的DNA双链断裂通过gammaH(2)AX聚焦测定法进行定量。结果:放射线和BBI处理均刺激EGFR内化进入细胞质。此过程涉及src激酶激活,Y845处的EGFR磷酸化和Y14处的小窝蛋白1磷酸化。 EGFR内在化与核EGFR转运相关,并与T654处的EGFR磷酸化有关。核EGFR与DNA-PK复合物的形成和活化有关。此外,在放射线和BBI处理后,发现核EGFR与TP53结合,在S15磷酸化,与MDC1结合。值得注意的是,mt细胞中,EGFR核复合物中的MDC1明显降低。 TP53,并不能通过BBI治疗或辐射增加。有趣的是,在带有mt的单元格中。 TP53 BBI介导的双链断裂修复的刺激受到显着阻碍。结论:这些数据表明,BBI刺激了EGFR,TP53和MDC1蛋白之间复合物的形成。仅TP53细胞。由于MDC1对于募集DNA修复灶至关重要,因此该观察结果可以解释BBI如何选择性刺激wt中DNA双链断裂的修复。 TP53细胞。

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