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首页> 外文期刊>Molecular Cancer >Efficient TGF-β/SMAD signaling in human melanoma cells associated with high c-SKI/SnoN expression
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Efficient TGF-β/SMAD signaling in human melanoma cells associated with high c-SKI/SnoN expression

机译:与高c-SKI / SnoN表达相关的人黑素瘤细胞中有效的TGF-β/ SMAD信号传导

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Background SKI and SnoN proteins have been shown to inhibit TGF-β signaling, acting both as transcriptional co-repressors in the cell nucleus, and as sequestrators of SMAD proteins in the cytoplasm. TGF-β , on the other hand, induces rapid, proteasome-mediated, degradation of both proteins. How elevated SKI and SnoN protein levels co-exist with active autocrine TGF-β signaling in cancer cells is yet to be understood. Results In this study, we found elevated SKI and SnoN protein levels in a panel of melanoma cell lines, as compared to normal melanocytes. There was no correlation between SKI protein content and the capacity of melanoma cells to invade Matrigel ?, to form subcutaneous tumors, or to metastasize to bone after intracardiac inoculation into nude mice. Nor did we find a correlation between SKI expression and histopathological staging of human melanoma. TGF-β induced a rapid and dose-dependent degradation of SKI protein, associated with SMAD3/4 specific transcriptional response and induction of pro-metastatic target genes, partially prevented by pharmacologic blockade of proteasome activity. SKI knockdown in 1205Lu melanoma cells did not alter their invasive capacity or transcriptional responses to TGF-β , and did not allow p21 expression in response to TGF-β or reveal any growth inhibitory activity of TGF-β . Conclusions Despite high expression in melanoma cells, the role of SKI in melanoma remains elusive: SKI does not efficiently interfere with the pro-oncogenic activities of TGF-β , unless stabilized by proteasome blockade. Its highly labile nature makes it an unlikely target for therapeutic intervention.
机译:背景SKI和SnoN蛋白已显示出抑制TGF-β信号转导的作用,既在细胞核中充当转录共阻遏物,又在细胞质中充当SMAD蛋白的螯合剂。另一方面,TGF-β诱导蛋白酶体介导的两种蛋白质快速降解。如何提高癌细胞中SKI和SnoN蛋白水平与活性自分泌TGF-β信号信号共存的方式尚待了解。结果在这项研究中,我们发现与正常黑素细胞相比,一组黑素瘤细胞系中的SKI和SnoN蛋白水平升高。在心脏内接种裸鼠后,SKI蛋白含量与黑色素瘤细胞侵袭Matrigel ?、形成皮下肿瘤或转移至骨骼的能力之间没有相关性。我们也未发现SKI表达与人类黑色素瘤的组织病理学分期之间存在相关性。 TGF-β诱导了SKI蛋白的快速和剂量依赖性降解,这与SMAD3 / 4特异性转录反应和前转移靶基因的诱导有关,但部分被蛋白酶体活性的药理学阻止。在1205Lu黑色素瘤细胞中的SKI抑制作用没有改变其对TGF-β的侵袭能力或转录反应,也不允许p21表达对TGF-β的反应或显示TGF-β的任何生长抑制活性。结论尽管在黑素瘤细胞中高表达,但SKI在黑素瘤中的作用仍然难以捉摸:SKI不能有效地干扰TGF-β的促癌活性,除非通过蛋白酶体阻断使其稳定。它的高度不稳定特性使其不可能成为治疗干预的靶标。

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