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Breast Cancer Special Feature: Mechanistic insight into Myc stabilization in breast cancer involving aberrant Axin1 expression

机译:乳腺癌专题:涉及异常Axin1表达的乳腺癌Myc稳定的机制研究

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摘要

High expression of the oncoprotein Myc has been linked to poor outcome in human tumors. Although MYC gene amplification and translocations have been observed, this can explain Myc overexpression in only a subset of human tumors. Myc expression is in part controlled by its protein stability, which can be regulated by phosphorylation at threonine 58 (T58) and serine 62 (S62). We now report that Myc protein stability is increased in a number of breast cancer cell lines and this correlates with increased phosphorylation at S62 and decreased phosphorylation at T58. Moreover, we find this same shift in phosphorylation in primary breast cancers. The signaling cascade that controls phosphorylation at T58 and S62 is coordinated by the scaffold protein Axin1. We therefore examined Axin1 in breast cancer and report decreased AXIN1 expression and a shift in the ratio of expression of two naturally occurring AXIN1 splice variants. We demonstrate that this contributes to increased Myc protein stability, altered phosphorylation at S62 and T58, and increased oncogenic activity of Myc in breast cancer. Thus, our results reveal an important mode of Myc activation in human breast cancer and a mechanism contributing to Myc deregulation involving unique insight into inactivation of the Axin1 tumor suppressor in breast cancer.
机译:癌蛋白Myc的高表达与人类肿瘤的不良预后有关。尽管已经观察到MYC基因扩增和易位,但这可以解释Myc仅在部分人类肿瘤中的过表达。 Myc的表达部分受其蛋白质稳定性控制,该稳定性可通过苏氨酸58(T58)和丝氨酸62(S62)的磷酸化来调节。现在,我们报告Myc蛋白稳定性在许多乳腺癌细胞系中增加,并且这与S62处的磷酸化增加和T58处的磷酸化减少相关。此外,我们发现原发性乳腺癌中磷酸化的这种变化。控制T58和S62磷酸化的信号级联由支架蛋白Axin1协调。因此,我们检查了乳腺癌中的Axin1,并报告了AXIN1表达降低和两种天然存在的AXIN1剪接变体的表达比例发生了变化。我们证明,这有助于增加Myc蛋白的稳定性,改变S62和T58处的磷酸化,并增加Myc在乳腺癌中的致癌活性。因此,我们的研究结果揭示了人类乳腺癌中Myc激活的重要模式,以及导致Myc失调的机制,涉及对乳腺癌Axin1肿瘤抑制因子失活的独特见解。

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