4.5 Article

Loss of TP53I11 Enhances the Extracellular Matrix-independent Survival by Promoting Activation of AMPK

Journal

IUBMB LIFE
Volume 71, Issue 2, Pages 183-191

Publisher

WILEY
DOI: 10.1002/iub.1949

Keywords

TP53I11; ECM-independent survival; AKT; AMPK; migration

Funding

  1. National Natural Science Foundation of China [31471307]
  2. Ministry of Science and Technology (MOST) [2017YFA0104301, 2014CB965003]
  3. CAS/SAFEA International Innovation Teams program
  4. Hundred Talent Program of Chinese Academy of Sciences

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Extracellular matrix (ECM)-independent survival is an essential prerequisite for tumor metastasis, and a hallmark of epithelial cancer stem cells and epithelial-mesenchymal transition (EMT). Here, we found that loss of TP53I11 enhanced, and overexpression of TP53I11 suppressed the ECM-independent survival, EMT, and migration in MCF10A cells. TP53I11 has long been considered as a transcriptional target of TP53. However, we found that TP53I11 regulated the ECM-independent survival by a TP53-independent way. As a metabolic sensor, AMPK promoted anoikis resistance by inhibiting AKT/m-TOR/p70S6K signaling pathway. It was recently revealed that the reciprocal inhibitory relationship between AKT and AMPK regulated adaptation of cells to ECM-detachment. Our results demonstrated that loss of TP53I11 promoted the activation of AKT/m-TOR pathway, increased PGC-1 alpha expression and thereby enhanced OXPHOS in attach-cultured MCF10A cells, but promoted AMPK activation to inhibit AKT/m-TOR/p70S6K signaling pathway in detach-cultured MCF10A cells. This indicates that TP53I11 functions as a mediator to balance activation of AKT and AMPK to adapt cells to different cellular contexts such as ECM-attachment and -detachment. (c) 2018 IUBMB Life, 71(1):183-191, 2019

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