Aurora-A regulation of nuclear factor-κB signaling by phosphorylation of IκBα

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Abstract

The Aurora-A/STK15 gene encodes a kinase that is frequently amplified in cancer. Overexpression of Aurora-A in mammalian cells leads to centrosome amplification, genetic instability, and transformation. In this study, we show that Aurora-A activates nuclear factor-κB (NF-κB) via IκBα phosphorylation. Inhibition of endogenous Aurora-A reduces tumor necrosis factor α (TNFα)-induced IκBα degradation. We analyzed primary human breast cancers, and 13.6% of samples showed Aurora-A gene amplification, all of which exhibited nuclear localization of NF-κB. We propose that this subgroup of patients with breast cancer might benefit from inhibiting Aurora-A. We also show that down-regulation of NF-κB via Aurora-A depletion can enhance cisplatin-dependent apoptosis. These data define a new role for Aurora-A in regulating IκBα that is critical for the activation of NF-κB-directed gene expression and may be partially responsible for the oncogenic effect of Aurora-A when the gene is amplified and overexpressed in human tumors. ©2007 American Association for Cancer Research.

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APA

Briassouli, P., Chan, F., Savage, K., Reis-Filho, J. S., & Linardopoulos, S. (2007). Aurora-A regulation of nuclear factor-κB signaling by phosphorylation of IκBα. Cancer Research, 67(4), 1689–1695. https://doi.org/10.1158/0008-5472.CAN-06-2272

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