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首页> 外文期刊>Molecular Cancer >MiTF links Erk1/2 kinase and p21CIP1/WAF1 activation after UVC radiation in normal human melanocytes and melanoma cells
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MiTF links Erk1/2 kinase and p21CIP1/WAF1 activation after UVC radiation in normal human melanocytes and melanoma cells

机译:在正常人黑素细胞和黑素瘤细胞中,UVC辐射后,MiTF链接Erk1 / 2激酶和p21CIP1 / WAF1活化

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As a survival factor for melanocytes lineage cells, MiTF plays multiple roles in development and melanomagenesis. What role MiTF plays in the DNA damage response is currently unknown. In this report we observed that MiTF was phosphorylated at serine 73 after UVC radiation, which was followed by proteasome-mediated degradation. Unlike after c-Kit stimulation, inhibiting p90RSK -1 did not abolish the band shift of MiTF protein, nor did it abolish the UVC-mediated MiTF degradation, suggesting that phosphorylation on serine 73 by Erk1/2 is a key event after UVC. Furthermore, the MiTF-S73A mutant (Serine 73 changed to Alanine via site-directed mutagenesis) was unable to degrade and was continuously expressed after UVC exposure. Compared to A375 melanoma cells expressing wild-type MiTF (MiTF-WT), cells expressing MiTF-S73A mutant showed less p21WAF1/CIP1 accumulation and a delayed p21WAF1/CIP1 recovery after UVC. Consequently, cells expressing MiTF-WT showed a temporary G1 arrest after UVC, but cells expressing MiTF-S73A mutant or lack of MiTF expression did not. Finally, cell lines with high levels of MiTF expression showed higher resistance to UVC-induced cell death than those with low-level MiTF. These data suggest that MiTF mediates a survival signal linking Erk1/2 activation and p21WAF1/CIP1 regulation via phosphorylation on serine 73, which facilitates cell cycle arrest. In addition, our data also showed that exposure to different wavelengths of UV light elicited different signal pathways involving MiTF.
机译:作为黑色素细胞谱系细胞的生存因子,MiTF在发育和黑色素生成中起着多种作用。目前尚不清楚MiTF在DNA损伤反应中起什么作用。在此报告中,我们观察到UVC辐射后,MiTF在丝氨酸73处被磷酸化,随后是蛋白酶体介导的降解。与c-Kit刺激后不同,抑制p90RSK -1不会消除MiTF蛋白的带移,也不会消除UVC介导的MiTF降解,这表明Erk1 / 2对丝氨酸73的磷酸化是UVC之后的关键事件。此外,MiTF-S73A突变体(73位丝氨酸通过定点诱变变为丙氨酸)无法降解,并在暴露于UVC后连续表达。与表达野生型MiTF(MiTF-WT)的A375黑色素瘤细胞相比,表达MiTF-S73A突变体的细胞显示更少的p21 =“ WAF1 / CIP1 积累和延迟的p21 < UVC后恢复WAF1 / CIP1 。因此,表达MiTF-WT的细胞在UVC后显示出暂时的G1阻滞,但是表达MiTF-S73A突变体或缺乏MiTF表达的细胞则没有。最后,具有高水平MiTF表达的细胞系比具有低水平MiTF的细胞系对UVC诱导的细胞死亡具有更高的抵抗力。这些数据表明,MiTF通过丝氨酸73上的磷酸化介导了Erk1 / 2激活和p21 调控之间的联系,从而促进了细胞周期的阻滞。此外,我们的数据还表明,暴露于不同波长的紫外线会引起涉及MiTF的不同信号途径。

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