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Contact Inhibition and High Cell Density Deactivate the Mammalian Target of Rapamycin Pathway, Thus Suppressing the Senescence Program

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Specialty Science
Date 2014 Jun 4
PMID 24889617
Citations 98
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Abstract

During cell cycle arrest caused by contact inhibition (CI), cells do not undergo senescence, thus resuming proliferation after replating. The mechanism of senescence avoidance during CI is unknown. Recently, it was demonstrated that the senescence program, namely conversion from cell cycle arrest to senescence (i.e., geroconversion), requires mammalian target of rapamycin (mTOR). Geroconversion can be suppressed by serum starvation, rapamycin, and hypoxia, which all inhibit mTOR. Here we demonstrate that CI, as evidenced by p27 induction in normal cells, was associated with inhibition of the mTOR pathway. Furthermore, CI antagonized senescence caused by CDK inhibitors. Stimulation of mTOR in contact-inhibited cells favored senescence. In cancer cells lacking p27 induction and CI, mTOR was still inhibited in confluent culture as a result of conditioning of the medium. This inhibition of mTOR suppressed p21-induced senescence. Also, trapping of malignant cells among contact-inhibited normal cells antagonized p21-induced senescence. Thus, we identified two nonmutually exclusive mechanisms of mTOR inhibition in high cell density: (i) CI associated with p27 induction in normal cells and (ii) conditioning of the medium, especially in cancer cells. Both mechanisms can coincide in various proportions in various cells. Our work explains why CI is reversible and, most importantly, why cells avoid senescence in vivo, given that cells are contact-inhibited in the organism.

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References
1.
Lloyd R, Erickson L, Jin L, Kulig E, Qian X, Cheville J . p27kip1: a multifunctional cyclin-dependent kinase inhibitor with prognostic significance in human cancers. Am J Pathol. 1999; 154(2):313-23. PMC: 1850003. DOI: 10.1016/S0002-9440(10)65277-7. View

2.
Luo Y, Li L, Zou P, Wang J, Shao L, Zhou D . Rapamycin enhances long-term hematopoietic reconstitution of ex vivo expanded mouse hematopoietic stem cells by inhibiting senescence. Transplantation. 2013; 97(1):20-9. PMC: 3877183. DOI: 10.1097/TP.0b013e3182a7fcf8. View

3.
Kolesnichenko M, Hong L, Liao R, Vogt P, Sun P . Attenuation of TORC1 signaling delays replicative and oncogenic RAS-induced senescence. Cell Cycle. 2012; 11(12):2391-401. PMC: 3383597. DOI: 10.4161/cc.20683. View

4.
Korotchkina L, Leontieva O, Bukreeva E, Demidenko Z, Gudkov A, Blagosklonny M . The choice between p53-induced senescence and quiescence is determined in part by the mTOR pathway. Aging (Albany NY). 2010; 2(6):344-52. PMC: 2919254. DOI: 10.18632/aging.100160. View

5.
Yegorov Y, Akimov S, Hass R, Zelenin A, Prudovsky I . Endogenous beta-galactosidase activity in continuously nonproliferating cells. Exp Cell Res. 1998; 243(1):207-11. DOI: 10.1006/excr.1998.4169. View