4.8 Article

Regulation of PTEN translation by PI3K signaling maintains pathway homeostasis

Journal

MOLECULAR CELL
Volume 81, Issue 4, Pages 708-+

Publisher

CELL PRESS
DOI: 10.1016/j.molcel.2021.01.033

Keywords

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Funding

  1. National Institutes of Health (NIH) [R35 CA210085, P01 CA094060]
  2. Breast Cancer Research Foundation [BCRF-20-141]
  3. NIH/NCI MSKCC Cancer Center Support Grant [P30 CA008748]
  4. NIH [R01 GM072024, U54 CA209992]
  5. Arlene and Joseph Taub Foundation

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The PI3K pathway regulates cell metabolism, proliferation, and migration, and dysregulation of this pathway is common in cancer. Physiologic and oncogenic activation of PI3K signaling both lead to increased expression of the negative regulator PTEN, limiting signal duration and pathway output. However, inhibition of the pathway reduces PTEN levels, contributing to pathway rebound in tumors treated with PI3K inhibitors.
The PI3K pathway regulates cell metabolism, proliferation, and migration, and its dysregulation is common in cancer. We now show that both physiologic and oncogenic activation of PI3K signaling increase the expression of its negative regulator PTEN. This limits the duration of the signal and output of the pathway. Physiologic and pharmacologic inhibition of the pathway reduces PTEN and contributes to the rebound in pathway activity in tumors treated with PI3K inhibitors and limits their efficacy. Regulation of PTEN is due to mTOR/4E-BP1-dependent control of its translation and is lost when 4E-BP1 is deleted. Translational regulation of PTEN is therefore a major homeostatic regulator of physiologic PI3K signaling and plays a role in reducing the pathway activation by oncogenic PIK3CA mutants and the antitumor activity of PI3K pathway inhibitors. However, pathway output is hyperactivated in tumor cells with coexistent PI3K mutation and loss of PTEN function.

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