Article ID Journal Published Year Pages File Type
2041939 Cell Reports 2015 9 Pages PDF
Abstract

•Doxorubicin triggers activation of Akt signaling in breast cancer cells•MERIT40 is phosphorylated by Akt in response to doxorubicin exposure•MERIT40 phosphorylation contributes to DNA repair and cell survival•PI3K and Akt inhibitors sensitize breast cancer cells to doxorubicin

SummaryResistance to cytotoxic chemotherapy drugs, including doxorubicin, is a significant obstacle to the effective treatment of breast cancer. Here, we have identified a mechanism by which the PI3K/Akt pathway mediates resistance to doxorubicin. In addition to inducing DNA damage, doxorubicin triggers sustained activation of Akt signaling in breast cancer cells. We show that Akt contributes to chemotherapy resistance such that PI3K or Akt inhibitors sensitize cells to doxorubicin. We identify MERIT40, a component of the BRCA1-A DNA damage repair complex, as an Akt substrate that is phosphorylated following doxorubicin treatment. MERIT40 phosphorylation facilitates assembly of the BRCA1-A complex in response to DNA damage and contributes to DNA repair and cell survival following doxorubicin treatment. Finally, MERIT40 phosphorylation in human breast cancers is associated with estrogen receptor positivity. Our findings suggest that combination therapy with PI3K or Akt inhibitors and doxorubicin may constitute a successful strategy for overcoming chemotherapy resistance.

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