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Phosphorylation of the tumor suppressor CYLD by the breast cancer oncogene IKKepsilon promotes cell transformation.

机译:乳腺癌癌基因IKKepsilon对肿瘤抑制因子CYLD的磷酸化促进细胞转化。

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摘要

The noncanonical IKK family member IKKepsilon is essential for regulating antiviral signaling pathways and is a recently discovered breast cancer oncoprotein. Although several IKKepsilon targets have been described, direct IKKepsilon substrates necessary for regulating cell transformation have not been identified. Here, we performed a screen for putative IKKepsilon substrates using an unbiased proteomic and bioinformatic approach. Using a positional scanning peptide library assay, we determined the optimal phosphorylation motif for IKKepsilon and used bioinformatic approaches to predict IKKepsilon substrates. Of these potential substrates, serine 418 of the tumor suppressor CYLD was identified as a likely site of IKKepsilon phosphorylation. We confirmed that CYLD is directly phosphorylated by IKKepsilon and that IKKepsilon phosphorylates serine 418 in vivo. Phosphorylation of CYLD at serine 418 decreases its deubiquitinase activity and is necessary for IKKepsilon-driven transformation. Together, these observations define IKKepsilon and CYLD as an oncogene-tumor suppressor network that participates in tumorigenesis.
机译:非规范的IKK家族成员IKKepsilon对于调节抗病毒信号通路至关重要,并且是最近发现的乳腺癌癌蛋白。尽管已经描述了几种IKKepsilon靶标,但尚未确定调节细胞转化所必需的直接IKKepsilon底物。在这里,我们使用无偏蛋白质组学和生物信息学方法对推定的IKKepsilon底物进行了筛选。使用位置扫描肽库测定法,我们确定了IKKepsilon的最佳磷酸化基序,并使用生物信息学方法来预测IKKepsilon底物。在这些潜在的底物中,肿瘤抑制物CYLD的丝氨酸418被鉴定为IKKepsilon磷酸化的可能位点。我们证实了CYLD被IKKepsilon直接磷酸化并且IKKepsilon在体内磷酸化了丝氨酸418。 CYLD在丝氨酸418上的磷酸化会降低其去泛素酶活性,并且是IKKepsilon驱动的转化所必需的。总之,这些发现将IKKepsilon和CYLD定义为参与肿瘤发生的癌基因肿瘤抑制网络。

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