The mTORC1/S6K/PDCD4/eIF4A axis determines outcome of mitosis

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Abstract

mTOR is a serine/threonine kinase which acts a master regulator of cell growth and proliferation. Raptor, a scaffolding protein that recruits substrates to mTOR complex 1 (mTORC1), is known to be phosphorylated during mitosis, but the significance of this phosphorylation remains largely unknown. Here we show that raptor expression and mTORC1 activity are dramatically reduced in mitotic arrested cells across a variety of cancer and normal cell lines. Prevention of raptor phosphorylation during mitosis resulted in reactivation of mTORC1 in a rapamycin-sensitive manner. Importantly, expression of a non-phosphorylatable raptor mutant caused a dramatic reduction in cytotoxicity of the spindle poison Taxol. This effect was mediated via degradation of Programmed Cell Death Protein 4 (PDCD4), a tumor suppressor protein that inhibits eIF4A activity and is negatively regulated by the mTORC1/S6K pathway. Moreover, pharmacological inhibition of eIF4A was able to enhance the effects of taxol and restore sensitivity in Taxol resistant cancer cells. These findings indicate that the mTORC1/S6K/PDCD4/eIF4A axis has a pivotal role in death vs. slippage decision during prolonged mitotic arrest and may be exploited to gain a clinical benefit in treating cancers resistant to anti-mitotic drugs.

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europepmc
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