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Aberrant ribosome biogenesis activates c-Myc and ASK1 pathways resulting in p53-dependent G1 arrest

Authors
Kim, H. D.Kim, T-SKim, J.
Issue Date
7월-2011
Publisher
NATURE PUBLISHING GROUP
Keywords
ASK1; c-Myc; p53; rpL11; rpS3; ribosomal stress
Citation
ONCOGENE, v.30, no.30, pp.3317 - 3327
Indexed
SCIE
SCOPUS
Journal Title
ONCOGENE
Volume
30
Number
30
Start Page
3317
End Page
3327
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/112071
DOI
10.1038/onc.2011.47
ISSN
0950-9232
Abstract
The largest energy consumer in the cell is the ribosome biogenesis whose aberrancy elicits various diseases in humans. It has been recently revealed that p53 induction, along with cell cycle arrest, is related with abnormal ribosome biogenesis, but the exact mechanism still remains unknown. In this study, we have found that aberrant ribosome biogenesis activates two parallel cellular pathways, c-Myc and ASK1/p38, which result in p53 induction and G1 arrest. The c-Myc stabilizes p53 by rpL11-mediated HDM2 inhibition, and ASK1/p38 activates p53 by phosphorylation on serine 15 and 33. Our studies demonstrate the relationship between these two pathways and p53 induction. The changes caused by impaired ribosomal stress, such as p53 induction and G1 arrest, were completely disappeared by inhibition of either pathway. These findings suggest a monitoring mechanism of c-Myc and ASK1/p38 against abnormal ribosome biogenesis through controlling the stability and activity of p53 protein. Oncogene (2011) 30, 3317-3327; doi:10.1038/onc.2011.47; published online 7 March 2011
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