Open Access
Insulin‐like growth factor‐1 regulates the SIRT 1‐p53 pathway in cellular senescence
Author(s) -
Tran Duc,
Bergholz Johann,
Zhang Haibo,
He Hanbing,
Wang Yang,
Zhang Yujun,
Li Qintong,
Kirkland James L.,
Xiao ZhiXiong
Publication year - 2014
Publication title -
aging cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.103
H-Index - 140
eISSN - 1474-9726
pISSN - 1474-9718
DOI - 10.1111/acel.12219
Subject(s) - biology , senescence , growth factor , microbiology and biotechnology , insulin like growth factor , insulin , cellular senescence , cancer research , endocrinology , genetics , gene , receptor , phenotype
Summary Cellular senescence, which is known to halt proliferation of aged and stressed cells, plays a key role against cancer development and is also closely associated with organismal aging. While increased insulin‐like growth factor ( IGF ) signaling induces cell proliferation, survival and cancer progression, disrupted IGF signaling is known to enhance longevity concomitantly with delay in aging processes. The molecular mechanisms involved in the regulation of aging by IGF signaling and whether IGF regulates cellular senescence are still poorly understood. In this study, we demonstrate that IGF ‐1 exerts a dual function in promoting cell proliferation as well as cellular senescence. While acute IGF ‐1 exposure promotes cell proliferation and is opposed by p53, prolonged IGF ‐1 treatment induces premature cellular senescence in a p53‐dependent manner. We show that prolonged IGF ‐1 treatment inhibits SIRT 1 deacetylase activity, resulting in increased p53 acetylation as well as p53 stabilization and activation, thus leading to premature cellular senescence. In addition, either expression of SIRT 1 or inhibition of p53 prevented IGF ‐1‐induced premature cellular senescence. Together, these findings suggest that p53 acts as a molecular switch in monitoring IGF ‐1‐induced proliferation and premature senescence, and suggest a possible molecular connection involving IGF ‐1‐ SIRT 1‐p53 signaling in cellular senescence and aging.