Functional Effects of AKT3 on Aurora Kinase Inhibitor-induced Aneuploidy.

J Biol Chem

From the Division of Chemotherapy, Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo 105-8512, Japan.

Published: February 2017

AI Article Synopsis

  • * Researchers found that AKT3, a member of the AKT family responsible for cell growth and drug resistance, is overexpressed in cells resistant to AURK inhibitors, creating challenges for effective cancer treatment.
  • * The study demonstrates that combining an AKT inhibitor (AZD5363) with AURK inhibitor (VX-680) can enhance cancer cell sensitivity, as depleting AKT3 makes cells more susceptible to the AURK inhibitor while also reducing

Article Abstract

The suppression of mitotic Aurora kinases (AURKs) by AURK inhibitors frequently causes cytokinetic failure, leading to polyploidy or aneuploidy, indicating the critical role of AURK-mediated phosphorylation during cytokinesis. We demonstrate the deregulated expression of AKT3 in Aurora kinase inhibitor (AURKi)-resistant cells, which we established from human colorectal cancer HCT 116 cells. The AKT family, which includes AKT1, -2, and -3, plays multiple roles in antiapoptotic functions and drug resistance and is involved in cell growth and survival pathways. We found that an AKT inhibitor, AZD5363, showed synergistic effect with an AURKi, VX-680, on two AKT3-expressing AURKi-resistant cell lines, and AKT3 knockdown sensitized cells to VX-680. Consistent with these activities, AKT3 expression suppressed AURKi-induced apoptosis and conferred resistance to AURKi. Thus, AKT3 expression affects cell sensitivity to AURKi. Moreover, we found that AKT3 expression suppressed AURKi-induced aneuploidy, and inversely AKT3 knockdown enhanced it. In addition, partial co-localization of AKT3 with AURKB was observed during anaphase. Overall, this study suggests that AKT3 could repress the antiproliferative effects of AURKi, with a novel activity particularly suppressing the aneuploidy induction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5290962PMC
http://dx.doi.org/10.1074/jbc.M116.747048DOI Listing

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