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Low Levels of Sox2 are required for Melanoma Tumor-Repopulating Cell Dormancy

机译:黑色素瘤肿瘤再生细胞休眠需要低水平的Sox2

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摘要

Tumorigenic cells, when facing a hostile environment, may enter a dormant state, leading to long-term tumor survival, relapse, and metastasis. To date, the molecular mechanism of tumor cell dormancy remains poorly understood.>Methods: A soft, 3-dimentional (3D) fibrin gel culture system was used to mechanically select and grow highly malignant and tumorigenic melanoma tumor-repopulating cells (TRCs). We cultured control melanoma TRCs, TRCs with Sox2 knockdown, TRCs with Sox2 knockout, and a 2D control for in vitro and in vivo experiments. Western blotting, immunofluorescence, and flow cytometry analysis were performed to examine TRC dormancy and exit from dormancy.>Results: Under a low-expression condition, we show that Sox2, a stemness molecule participates in dormancy regulation of highly tumorigenic cells that can repopulate a tumor (TRCs). Intriguingly, complete depletion of Sox2 via knockout results in dormancy exit and growth resumption of melanoma TRCs in culture and elevation of melanoma TRC apoptosis. Mice that are injected subcutaneously with Sox2-depleted melanoma TRCs do not form tumors and survive much longer than those injected with melanoma TRCs. We found that complete depletion of Sox2 promotes nuclear translocation of phosphorylated STAT3, where it binds to the p53 gene promoter, thus activating the p53-caspase3 cascade.>Conclusion: These findings provide a novel insight into the role of the Sox2 gene in tumor cell stemness, tumor dormancy, and apoptosis.
机译:致瘤细胞在面对不利环境时可能会进入休眠状态,从而导致长期的肿瘤存活,复发和转移。迄今为止,尚不清楚肿瘤细胞休眠的分子机制。>方法:使用柔软的3维(3D)纤维蛋白凝胶培养系统机械选择并生长高度恶性和致瘤性黑色素瘤-重新填充细胞(TRC)。我们培养了对照黑素瘤TRC,带有Sox2敲除的TRC,带有Sox2敲除的TRC,以及用于体外和体内实验的2D对照。 >结果:在低表达条件下,我们表明茎分子Sox2参与了高度调控的休眠调节。可以重新形成肿瘤(TRC)的致瘤细胞。有趣的是,通过敲除使Sox2完全耗尽会导致黑素瘤TRC在培养中退出休眠并恢复生长,从而增加黑素瘤TRC凋亡。皮下注射含Sox2的黑色素瘤TRC的小鼠不会形成肿瘤,并且比注射黑色素瘤TRC的小鼠存活更长。我们发现Sox2的完全耗尽会促进磷酸化STAT3的核易位,并与p53基因启动子结合,从而激活p53-caspase3级联反应。>结论: Sox2基因在肿瘤细胞干,肿瘤休眠和凋亡中的作用。

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