Department of Chemistry and Purdue University Center for Cancer Research, Purdue University, West Lafayette, IN 47907, USA.
J Cell Sci. 2011 Aug 15;124(Pt 16):2711-22. doi: 10.1242/jcs.084970.
Aurora A kinase is overexpressed in the majority of breast carcinomas. A chemical genetic approach was used to identify the malignant targets of Aurora A, which revealed pleckstrin-homology-like domain protein PHLDA1 as an Aurora A substrate. PHLDA1 downregulation is a powerful prognostic predictor for breast carcinoma, which was confirmed in our study. We further show that downregulation of PHLDA1 is associated with estrogen receptor (ER) expression in breast carcinoma. Aurora A directly phosphorylates PHLDA1 leading to its degradation. PHLDA1 also negatively regulates Aurora A, thereby triggering a feedback loop. We demonstrate the underlying mechanisms by which PHLDA1 upregulation strongly antagonizes Aurora-A-mediated oncogenic pathways, thereby revealing PHLDA1 degradation as a key mechanism by which Aurora A promotes breast malignancy. Thus, not surprisingly, PHLDA1 upregulation acts synergistically with Aurora A inhibition in promoting cell death. PHLDA1 overexpression might therefore be an alternative method to modulate Aurora A deregulation in breast carcinoma. Finally, this study led to the discovery of a mutation in the Aurora A active site that renders it amenable to the chemical genetic approach. Similar mutations are required for Aurora B, suggesting that this modified approach can be extended to other kinases that have hitherto not been amenable to this methodology.
极光激酶 A 在大多数乳腺癌中过度表达。采用化学遗传学方法来鉴定极光激酶 A 的恶性靶标,发现 PH 结构域家族成员 1(pleckstrin-homology-like domain protein 1,PHLDA1)是极光激酶 A 的底物。PHLDA1 的下调是乳腺癌强有力的预后预测因子,本研究对此进行了验证。我们还进一步表明,PHLDA1 的下调与乳腺癌中的雌激素受体(estrogen receptor,ER)表达相关。极光激酶 A 可直接磷酸化 PHLDA1,导致其降解。PHLDA1 还可负向调节极光激酶 A,从而触发反馈回路。我们揭示了 PHLDA1 上调强烈拮抗极光激酶 A 介导的致癌途径的潜在机制,从而揭示了 PHLDA1 降解是极光激酶 A 促进乳腺癌恶性的关键机制。因此,PHLDA1 上调与极光激酶 A 抑制协同作用以促进细胞死亡并不奇怪。PHLDA1 的过表达可能是调节乳腺癌中极光激酶 A 失调的另一种方法。最后,本研究发现了极光激酶 A 活性位点的突变,使其易于采用化学遗传学方法。极光激酶 B 也需要类似的突变,这表明这种改良的方法可以扩展到其他迄今为止无法采用这种方法的激酶。