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.

Oncogenesis
|May 5, 2021
PubMed

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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