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mTOR inhibition acts as an unexpected checkpoint in p53-mediated tumor suppression
Ning Kon, Yang Ou, Shang-Jui Wang, Huan Li, Anil K. Rustgi, Wei Gu
Genes & Development · 2020 · ▲ 67 citations
Abstract
Here, we showed that the acetylation-defective p53-4KR mice, lacking the ability of cell cycle arrest, senescence(definition), apoptosis, and ferroptosis, were tumor prone but failed to develop early-onset tumors. By identifying a novel p53 acetylation site at lysine K136, we found that simultaneous mutations at all five acetylation sites (p53-5KR) diminished its remaining tumor suppression function. Moreover, the embryonic lethality caused by the deficiency of mdm2 was fully rescued in the background of p535KR/5KR, but not p534KR/4KR background. p53-4KR retained the ability to suppress mTOR(definition) function but this activity was abolished in p53-5KR cells. Notably, the early-onset tumor formation observed in p535KR/5KR and p53-null mice was suppressed upon the treatment of the mTOR inhibitor. These results suggest that p53-mediated mTOR regulation plays an important role in both embryonic development and tumor suppression, independent of cell cycle arrest, senescence, apoptosis, and ferroptosis.
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- 10.1101/gad.340919.120
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- 2026-08-24 MST
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APA
Kon, N., Ou, Y., Wang, S., Li, H., Rustgi, A.K., & Gu, W. (2020). mTOR inhibition acts as an unexpected checkpoint in p53-mediated tumor suppression. <em>Genes & Development</em>. https://doi.org/10.1101/gad.340919.120
Vancouver
Kon N, Ou Y, Wang S, Li H, Rustgi AK, Gu W. mTOR inhibition acts as an unexpected checkpoint in p53-mediated tumor suppression. Genes & Development. 2020. doi:10.1101/gad.340919.120.
BibTeX
@unpublished{ning2020mTORin,
title = {mTOR inhibition acts as an unexpected checkpoint in p53-mediated tumor suppression},
author = {Ning Kon and Yang Ou and Shang-Jui Wang and Huan Li and Anil K. Rustgi and Wei Gu},
journal = {Genes & Development},
year = {2020},
doi = {10.1101/gad.340919.120},
}
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