首页> 美国卫生研究院文献>The Journal of Biological Chemistry >SKP2 Oncogene Is a Direct MYC Target Gene and MYC Down-regulates p27KIP1 through SKP2 in Human Leukemia Cells
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SKP2 Oncogene Is a Direct MYC Target Gene and MYC Down-regulates p27KIP1 through SKP2 in Human Leukemia Cells

机译:SKP2癌基因是直接的MYC靶基因MYC通过SKP2下调人类白血病细胞中的p27KIP1。

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摘要

SKP2 is the ubiquitin ligase subunit that targets p27KIP1 (p27) for degradation. SKP2 is induced in the G1-S transit of the cell cycle, is frequently overexpressed in human cancer, and displays transformation activity in experimental models. Here we show that MYC induces SKP2 expression at the mRNA and protein levels in human myeloid leukemia K562 cells with conditional MYC expression. Importantly, in these systems, induction of MYC did not activate cell proliferation, ruling out SKP2 up-regulation as a consequence of cell cycle entry. MYC-dependent SKP2 expression was also detected in other cell types such as lymphoid, fibroblastic, and epithelial cell lines. MYC induced SKP2 mRNA expression in the absence of protein synthesis and activated the SKP2 promoter in luciferase reporter assays. With chromatin immunoprecipitation assays, MYC was detected bound to a region of human SKP2 gene promoter that includes E-boxes. The K562 cell line derives from human chronic myeloid leukemia. In a cohort of chronic myeloid leukemia bone marrow samples, we found a correlation between MYC and SKP2 mRNA levels. Analysis of cancer expression databases also indicated a correlation between MYC and SKP2 expression in lymphoma. Finally, MYC-induced SKP2 expression resulted in a decrease in p27 protein in K562 cells. Moreover, silencing of SKP2 abrogated the MYC-mediated down-regulation of p27. Our data show that SKP2 is a direct MYC target gene and that MYC-mediated SKP2 induction leads to reduced p27 levels. The results suggest the induction of SKP2 oncogene as a new mechanism for MYC-dependent transformation.
机译:SKP2是泛素连接酶亚基,靶向p27 KIP1 (p27)降解。 SKP2在细胞周期的G1-S转运过程中被诱导,在人类癌症中经常过度表达,并在实验模型中显示出转化活性。在这里,我们显示MYC在有条件的MYC表达的人骨髓性白血病K562细胞中,在mRNA和蛋白水平上诱导SKP2表达。重要的是,在这些系统中,MYC的诱导未激活细胞增殖,排除了SKP2上调是细胞周期进入的结果。还可以在其他细胞类型(如淋巴样,成纤维细胞和上皮细胞系)中检测到MYC依赖性SKP2表达。在没有蛋白质合成的情况下,MYC诱导了SKP2 mRNA的表达,并在荧光素酶报告基因检测中激活了SKP2启动子。使用染色质免疫沉淀测定法,检测到MYC结合了人类SKP2基因启动子的一个区域,该区域包括E盒。 K562细胞系源自人类慢性粒细胞白血病。在一组慢性骨髓性白血病骨髓样本中,我们发现MYC与SKP2 mRNA水平之间存在相关性。癌症表达数据库的分析还表明淋巴瘤中MYC和SKP2表达之间存在相关性。最后,MYC诱导的SKP2表达导致K562细胞中p27蛋白减少。此外,SKP2沉默消除了MYC介导的p27下调。我们的数据表明,SKP2是直接的MYC靶基因,而MYC介导的SKP2诱导导致p27水平降低。结果表明,SKP2癌基因的诱导是MYC依赖性转化的新机制。

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