Nuclear receptor E75/NR1D2 promotes tumor malignant transformation by integrating Hippo and Notch pathways
Xianping Wang1,2, Yifan Guo3,4, Peng Lin3,4
1Westlake Laboratory of Life Sciences and Biomedicine, Hangzhou, 310024, Zhejiang, China. wangxianping@westlake.edu.cn.
Abstract:
Hormone therapy resistance and the ensuing aggressive tumor progression present a significant clinical challenge. However, the mechanisms underlying the induction of tumor malignancy upon inhibition of steroid hormone signaling remain poorly understood. Here, we demonstrate that Drosophila malignant epithelial tumors show a similar reduction in ecdysone signaling, the main steroid hormone pathway. Our analysis of ecdysone-induced downstream targets reveals that overexpression of the nuclear receptor E75, particularly facilitates the malignant transformation of benign tumors. Genome-wide DNA binding profiles and biochemistry data reveal that E75 not only binds to the transcription factors of both Hippo and Notch pathways, but also exhibits widespread co-binding to their target genes, thus contributing to tumor malignancy. We further validated these findings by demonstrating that depletion of NR1D2, the mammalian homolog of E75, inhibits the activation of Hippo and Notch target genes, impeding glioblastoma progression. Together, our study unveils a novel mechanism by which hormone inhibition promotes tumor malignancy, and describes an evolutionarily conserved role of the oncogene E75/NR1D2 in integration of Hippo and Notch pathway activity during tumor progression.
Insights
Hormone therapy resistance drives tumor malignancy. Overexpression of the E75 nuclear receptor integrates Hippo and Notch pathways, promoting cancer progression, a finding conserved in mammals.
Area of Science:
- Endocrinology
- Molecular Biology
- Cancer Research
Background:
- Hormone therapy resistance is a major clinical challenge in cancer.
- Mechanisms linking steroid hormone signaling inhibition to tumor malignancy are poorly understood.
Purpose of the Study:
- To investigate the role of steroid hormone signaling in tumor malignancy.
- To identify molecular mechanisms driving tumor progression upon hormone inhibition.
Main Methods:
- Analysis of ecdysone signaling in Drosophila malignant epithelial tumors.
- Genome-wide DNA binding profiles and biochemical assays.
- Depletion of NR1D2 (mammalian E75 homolog) in glioblastoma models.
Main Results:
- Reduced ecdysone signaling in malignant tumors.
- E75 overexpression promotes malignant transformation by integrating Hippo and Notch pathways.
- NR1D2 depletion inhibits Hippo and Notch target gene activation, impeding glioblastoma progression.
Conclusions:
- Hormone inhibition promotes tumor malignancy through a novel mechanism.
- E75/NR1D2 plays a conserved role in integrating Hippo and Notch pathways during tumor progression.
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