Aurora kinase A inhibition-induced autophagy triggers drug resistance in breast cancer cells

自噬 ATG5型 死孢子体1 PI3K/AKT/mTOR通路 癌症研究 生物 激酶 雷帕霉素的作用靶点 极光激酶 细胞凋亡 癌细胞 细胞生物学 癌症 细胞周期 生物化学 遗传学
作者
Zhengzhi Zou,Zhongyu Yuan,Qiongxia Zhang,Zi‐Jie Long,Jinna Chen,Zhiping Tang,Yuliang Zhu,Shupeng Chen,Jie Xu,Min Yan,Jing Wang,Quentin Liu
出处
期刊:Autophagy [Informa]
卷期号:8 (12): 1798-1810 被引量:167
标识
DOI:10.4161/auto.22110
摘要

We have previously shown that elevated expression of mitotic kinase aurora kinase A (AURKA) in cancer cells promotes the development of metastatic phenotypes and is associated clinically with adverse prognosis. Here, we first revealed a clinically positive correlation between AURKA and autophagy-associated protein SQSTM1 in breast cancer and further demonstrated that AURKA regulated SQSTM1 through autophagy. Indeed, depletion by siRNA or chemical inhibition of AURKA by the small molecule VX-680 increased both the level of microtubule-associated protein 1 light chain 3-II (LC3-II) and the number of autophagosomes, along with decreased SQSTM1. Conversely, overexpression of AURKA inhibited autophagy, as assessed by decreased LC3-II and increased SQSTM1 either upon nutrient deprivation or normal conditions. In addition, phosphorylated forms of both RPS6KB1 and mechanistic target of rapamycin (MTOR) were elevated by overexpression of AURKA whereas they were suppressed by depletion or inhibition of AURKA. Moreover, inhibition of MTOR by PP242, an inhibitor of MTOR complex1/2, abrogated the changes in both LC3-II and SQSTM1 in AURKA-overexpressing BT-549 cells, suggesting that AURKA-suppressed autophagy might be associated with MTOR activation. Lastly, repression of autophagy by depletion of either LC3 or ATG5, sensitized breast cancer cells to VX-680-induced apoptosis. Similar findings were observed in cells treated with the autophagy inhibitors chloroquine (CQ) and bafilomycin A1 (BAF). Our data thus revealed a novel role of AURKA as a negative regulator of autophagy, showing that AURKA inhibition induced autophagy, which may represent a novel mechanism of drug resistance in apoptosis-aimed therapy for breast cancer.
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