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Updated: Feb 15, 2026

Modeling Breast Cancer in Human Breast Tissue using a Microphysiological System
Published on: April 23, 2021
Inverse association between MDM2 and HUWE1 protein expression levels in human breast cancer and liposarcoma
Kaleigh Canfield1, Wendy Wells2,3, Joseph Geradts4
1Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, Hanover, NH 03755, USA.
Abstract:
The ubiquitin E3 ligase MDM2 is best known for its ability to suppress the tumor suppressor p53. However, MDM2 also targets other proteins for proteasomal degradation and accumulating evidence strongly suggests p53-independent roles of MDM2 in cancer. We previously reported that MDM2 promotes degradation of another ubiquitin E3 ligase HUWE1 by ubiquitination, particularly, which confers HER2+ breast cancer cells resistance to the HER2 inhibitor lapatinib. However, it remains unclear whether such a mechanism can operate in other cell types, independently of HER2 inhibitors. Moreover, in vivo evidence that supports HUWE1 degradation by MDM2 is missing. In the current study, we performed immunohistochemistry (IHC) to analyze expression levels of MDM2 and HUWE1 in normal organs, two breast cancer cohorts (A, n = 137 and B, n = 27), and a liposarcoma cohort (n = 45). Our results show that HUWE1 is ubiquitously expressed in healthy organs, where the oncoprotein MDM2 is undetectable. Likewise, in the majority of breast cancers regardless of their subtypes, MDM2 is below detectable levels, while HUWE1 is highly expressed. In contrast, in a subset of liposarcoma that is characterized by MDM2 overexpression, only 40% of these showed detectable HUWE1 protein. Importantly, despite the inverse association between MDM2 and HUWE1 protein levels, gene expression analysis in independent datasets revealed no such correlation at the mRNA level. Our results demonstrate the first in vivo evidence to support the hypothesis of MDM2-mediated HUWE1 degradation, which may help to understand the regulation of HUWE1 as well as p53-independent roles of MDM2.
Insights
The study provides the first in vivo evidence that MDM2 (mouse double minute 2 homolog) degrades HUWE1 (HECT, UBA, and WWE domain-containing E3 ubiquitin protein ligase 1). This suggests a p53-independent role for MDM2 in cancer, impacting HUWE1 regulation.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The ubiquitin E3 ligase MDM2 (mouse double minute 2 homolog) is known for suppressing tumor suppressor p53.
- MDM2 also targets other proteins for degradation, suggesting p53-independent roles in cancer.
- Previous work indicated MDM2 degrades HUWE1 (HECT, UBA, and WWE domain-containing E3 ubiquitin protein ligase 1), conferring resistance to HER2 inhibitors in breast cancer.
Purpose of the Study:
- To investigate the in vivo evidence for MDM2-mediated degradation of HUWE1.
- To explore the p53-independent roles of MDM2 in cancer.
- To analyze the expression patterns of MDM2 and HUWE1 in various human tissues and cancer types.
Main Methods:
- Immunohistochemistry (IHC) was used to analyze MDM2 and HUWE1 protein expression.
- Expression levels were assessed in normal organs, breast cancer cohorts (n=164), and a liposarcoma cohort (n=45).
- Gene expression analysis was performed on independent datasets to compare mRNA levels.
Main Results:
- HUWE1 was ubiquitously expressed in healthy organs, while MDM2 was undetectable.
- Most breast cancers showed low MDM2 and high HUWE1 expression.
- Liposarcomas with high MDM2 showed reduced HUWE1 levels in 40% of cases, and no correlation was found at the mRNA level.
Conclusions:
- This study presents the first in vivo evidence supporting MDM2-mediated degradation of HUWE1.
- The findings highlight a potential p53-independent mechanism of MDM2 action.
- Understanding MDM2-HUWE1 interaction may reveal new insights into cancer regulation and therapeutic strategies.
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