Tumorigenesis results from dysregulation of oncogenes and tumor suppressors that influence cellular proliferation, differentiation, apoptosis, and/or senescence. Many gene products involved in these processes are substrates of the E3 ubiquitin ligase Mule/Huwe1/Arf-BP1 (Mule), but whether Mule acts as an oncogene or tumor suppressor in vivo remains controversial. We generated K14Cre;Mule(flox/flox(y)) (Mule kKO) mice and subjected them to DMBA/PMA-induced skin carcinogenesis, which depends on oncogenic Ras signaling. Mule deficiency resulted in increased penetrance, number, and severity of skin tumors, which could be reversed by concomitant genetic knockout of c-Myc but not by knockout of p53 or p19Arf. Notably, in the absence of Mule, c-Myc/Miz1 transcriptional complexes accumulated, and levels of p21CDKN1A (p21) and p15INK4B (p15) were down-regulated. In vitro, Mule-deficient primary keratinocytes exhibited increased proliferation that could be reversed by Miz1 knockdown. Transfer of Mule-deficient transformed cells to nude mice resulted in enhanced tumor growth that again could be abrogated by Miz1 knockdown. Our data demonstrate in vivo that Mule suppresses Ras-mediated tumorigenesis by preventing an accumulation of c-Myc/Miz1 complexes that mediates p21 and p15 down-regulation.

Inoue, S., Hao, Z., Elia, A., Cescon, D., Zhou, L., Silvester, J., et al. (2013). Mule/Huwe1/Arf-BP1 suppresses Ras-driven tumorigenesis by preventing c-Myc/Miz1-mediated down-regulation of p21 and p15. GENES & DEVELOPMENT, 27(10), 1101-1114 [10.1101/gad.214577.113].

Mule/Huwe1/Arf-BP1 suppresses Ras-driven tumorigenesis by preventing c-Myc/Miz1-mediated down-regulation of p21 and p15

MELINO, GENNARO;
2013-05-15

Abstract

Tumorigenesis results from dysregulation of oncogenes and tumor suppressors that influence cellular proliferation, differentiation, apoptosis, and/or senescence. Many gene products involved in these processes are substrates of the E3 ubiquitin ligase Mule/Huwe1/Arf-BP1 (Mule), but whether Mule acts as an oncogene or tumor suppressor in vivo remains controversial. We generated K14Cre;Mule(flox/flox(y)) (Mule kKO) mice and subjected them to DMBA/PMA-induced skin carcinogenesis, which depends on oncogenic Ras signaling. Mule deficiency resulted in increased penetrance, number, and severity of skin tumors, which could be reversed by concomitant genetic knockout of c-Myc but not by knockout of p53 or p19Arf. Notably, in the absence of Mule, c-Myc/Miz1 transcriptional complexes accumulated, and levels of p21CDKN1A (p21) and p15INK4B (p15) were down-regulated. In vitro, Mule-deficient primary keratinocytes exhibited increased proliferation that could be reversed by Miz1 knockdown. Transfer of Mule-deficient transformed cells to nude mice resulted in enhanced tumor growth that again could be abrogated by Miz1 knockdown. Our data demonstrate in vivo that Mule suppresses Ras-mediated tumorigenesis by preventing an accumulation of c-Myc/Miz1 complexes that mediates p21 and p15 down-regulation.
15-mag-2013
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore BIO/11 - BIOLOGIA MOLECOLARE
English
Ubiquitin-Protein Ligases; Animals; Tumor Suppressor Protein p53; p21; c-Myc; Mice, Knockout; Cyclin-Dependent Kinase Inhibitor p16; Ras; Oncogene Protein p21(ras); Down-Regulation; Nuclear Proteins; Cyclin-Dependent Kinase Inhibitor p15; Keratinocytes; Male; Signal Transduction; Huwe1; Tetradecanoylphorbol Acetate; Protein Inhibitors of Activated STAT; Cyclin-Dependent Kinase Inhibitor p21; Mice; Skin Neoplasms; Proto-Oncogene Proteins c-myc; Miz1; Genes, ras; Mule; Cells, Cultured; 9,10-Dimethyl-1,2-benzanthracene; Cell Transformation, Neoplastic; Female
Inoue, S., Hao, Z., Elia, A., Cescon, D., Zhou, L., Silvester, J., et al. (2013). Mule/Huwe1/Arf-BP1 suppresses Ras-driven tumorigenesis by preventing c-Myc/Miz1-mediated down-regulation of p21 and p15. GENES & DEVELOPMENT, 27(10), 1101-1114 [10.1101/gad.214577.113].
Inoue, S; Hao, Z; Elia, A; Cescon, D; Zhou, L; Silvester, J; Snow, B; Harris, I; Sasaki, M; Li, W; Itsumi, M; Yamamoto, K; Ueda, T; Dominguez Brauer, C; Gorrini, C; Chio, I; Haight, J; You Ten, A; Mccracken, S; Wakeham, A; Ghazarian, D; Penn, L; Melino, G; Mak, T
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/102870
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