YWHAE-NUTM2 oncoprotein regulates proliferation and cyclin D1 via RAF/MAPK and Hippo pathways
Wen-Bin Ou1,2, Meijun Z Lundberg3, Shuihao Zhu4
1Zhejiang Provincial Key Laboratory of Silkworm Bioreactor and Biomedicine, College of Life and Medicine, Zhejiang Sci-Tech University, 310018, Hangzhou, Zhejiang, China. ouwenbin@tsinghua.org.cn.
Abstract:
Endometrial stromal sarcoma (ESS) is the second most common subtype of uterine mesenchymal cancer, after leiomyosarcoma, and oncogenic fusion proteins are found in many ESS. Our previous studies demonstrated transforming properties and diagnostic relevance of the fusion oncoprotein YWHAE-NUTM2 in high-grade endometrial stromal sarcoma (HG-ESS) and showed that cyclin D1 is a diagnostic biomarker in these HG-ESS. However, YWHAE-NUTM2 mechanisms of oncogenesis and roles in cyclin D1 expression have not been characterized. In the current studies, we show YWHAE-NUTM2 complexes with both BRAF/RAF1 and YAP/TAZ in HG-ESS. These interactions are functionally relevant because YWHAE-NUTM2 knockdown in HG-ESS and other models inhibits RAF/MEK/MAPK phosphorylation, cyclin D1 expression, and cell proliferation. Further, cyclin D1 knockdown in HG-ESS dephosphorylates RB1 and inhibits proliferation. In keeping with these findings, we show that MEK and CDK4/6 inhibitors have anti-proliferative effects in HG-ESS, and combinations of these inhibitors have synergistic activity. These findings establish that YWHAE-NUTM2 regulates cyclin D1 expression and cell proliferation by dysregulating RAF/MEK/MAPK and Hippo/YAP-TAZ signaling pathways. Recent studies demonstrate Hippo/YAP-TAZ pathway aberrations in many sarcomas, but this is among the first studies to demonstrate a well-defined oncogenic mechanism as the cause of Hippo pathway dysregulation.
Insights
High-grade endometrial stromal sarcoma (HG-ESS) oncogenesis involves the YWHAE-NUTM2 oncoprotein, which drives cell proliferation by disrupting RAF/MEK/MAPK and Hippo/YAP-TAZ pathways, impacting cyclin D1 expression.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genetics
Background:
- Endometrial stromal sarcoma (ESS) is a uterine mesenchymal cancer subtype.
- Oncogenic fusion proteins are implicated in many ESS cases.
- YWHAE-NUTM2 oncoprotein and cyclin D1 are relevant in high-grade ESS (HG-ESS).
Purpose of the Study:
- To characterize the oncogenic mechanisms of YWHAE-NUTM2.
- To elucidate the role of YWHAE-NUTM2 in regulating cyclin D1 expression.
- To investigate therapeutic strategies targeting HG-ESS.
Main Methods:
- Investigated YWHAE-NUTM2 protein interactions in HG-ESS models.
- Utilized knockdown studies for YWHAE-NUTM2, cyclin D1, and pathway components.
- Assessed the anti-proliferative effects of MEK and CDK4/6 inhibitors.
Main Results:
- YWHAE-NUTM2 complexes with BRAF/RAF1 and YAP/TAZ in HG-ESS.
- YWHAE-NUTM2 knockdown inhibited RAF/MEK/MAPK phosphorylation, cyclin D1 expression, and cell proliferation.
- Cyclin D1 knockdown led to RB1 dephosphorylation and reduced proliferation.
- MEK and CDK4/6 inhibitors showed anti-proliferative effects, with synergistic activity in combination.
Conclusions:
- YWHAE-NUTM2 drives HG-ESS proliferation by dysregulating RAF/MEK/MAPK and Hippo/YAP-TAZ pathways, affecting cyclin D1.
- This study provides a defined oncogenic mechanism for Hippo pathway dysregulation in sarcoma.
- Targeting MEK and CDK4/6 offers potential therapeutic strategies for HG-ESS.
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