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UBR5 Is Coamplified with MYC in Breast Tumors and Encodes an Ubiquitin Ligase That Limits MYC-Dependent Apoptosis

Authors :
Juha Klefström
Joanna W Pylvänäinen
Tero Aittokallio
Martin Eilers
Ying Liu
Pauliina Kronqvist
Ville Hietakangas
Mukund Sharma
Laxman Yetukuri
Abhishekh Gupta
Jukka Westermarck
Alok Jaiswal
Xi Qiao
Heidi M. Haikala
Annika Meinander
Joni Merisaari
Aravind K. Mohan
Kati Talvinen
Maria Llamazares Prada
Source :
Cancer Research. 80:1414-1427
Publication Year :
2020
Publisher :
American Association for Cancer Research (AACR), 2020.

Abstract

For maximal oncogenic activity, cellular MYC protein levels need to be tightly controlled so that they do not induce apoptosis. Here, we show how ubiquitin ligase UBR5 functions as a molecular rheostat to prevent excess accumulation of MYC protein. UBR5 ubiquitinates MYC and its effects on MYC protein stability are independent of FBXW7. Silencing of endogenous UBR5 induced MYC protein expression and regulated MYC target genes. Consistent with the tumor suppressor function of UBR5 (HYD) in Drosophila, HYD suppressed dMYC-dependent overgrowth of wing imaginal discs. In contrast, in cancer cells, UBR5 suppressed MYC-dependent priming to therapy-induced apoptosis. Of direct cancer relevance, MYC and UBR5 genes were coamplified in MYC-driven human cancers. Functionally, UBR5 suppressed MYC-mediated apoptosis in p53-mutant breast cancer cells with UBR5/MYC coamplification. Furthermore, single-cell immunofluorescence analysis demonstrated reciprocal expression of UBR5 and MYC in human basal-type breast cancer tissues. In summary, UBR5 is a novel MYC ubiquitin ligase and an endogenous rheostat for MYC activity. In MYC-amplified, and p53-mutant breast cancer cells, UBR5 has an important role in suppressing MYC-mediated apoptosis priming and in protection from drug-induced apoptosis. Significance: These findings identify UBR5 as a novel MYC regulator, the inactivation of which could be very important for understanding of MYC dysregulation on cancer cells.

Details

ISSN :
15387445 and 00085472
Volume :
80
Database :
OpenAIRE
Journal :
Cancer Research
Accession number :
edsair.doi...........5e7105d05582599b7d4452132fc28018
Full Text :
https://doi.org/10.1158/0008-5472.can-19-1647