4.6 Article

p16INK4A Induces Senescence and Inhibits EMT Through MicroRNA-141/MicroRNA-146b-5p-Dependent Repression of AUF1

期刊

MOLECULAR CARCINOGENESIS
卷 56, 期 3, 页码 985-999

出版社

WILEY
DOI: 10.1002/mc.22564

关键词

AUF1; p16(INK4a); miR-141/miR-146b-5p; EMT; senescence

资金

  1. King Faisal Specialist Hospital and Research Centre under RAC [2090027]

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Senescence and epithelial-to-mesenchymal transition (EMT) processes are under the control of common tumor suppressor proteins, EMT transcription factors, and microRNAs. However, the molecular mechanisms that coordinate the functional link between senescence and EMT are still elusive. We have shown here that p16(INK4A)-related induction of senescence is mediated through miR-141 and miR-146b-5p. These two microRNAs are up-regulated in aging human fibroblast and epithelial cells. Furthermore, miR-141 and miR146b-5p trigger cell cycle arrest at G1 phase and induce senescence in primary human fibroblasts and breast cancer cells in the presence and absence of p16(INK4A). Like p16(INK4A)-induced senescence, miR-141/miR146b-5p-related senescence is not associated with secretory phenotype, and is mediated through the RNA binding protein AUF1. We have further demonstrated that p16(INK4A) and its downstream miRNA targets inhibit EMT through suppressing the EMT inducer ZEB1 in an AUF1-dependent manner. Indeed, AUF1 binds the mRNA of this gene leading to increase in its level. These results indicate that p16(INK4A) controls both senescence and EMT through repressing EMT-related transcription factor via miR-141/miR146b-5p and their target AUF1. This sheds more light on the molecular basis of the tumor suppressive functions of p16(INK4A), which represses both the proliferative and the migratory/invasive capacities of cells. (C) 2016 Wiley Periodicals, Inc.

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