Usp22 overexpression leads to aberrant signal transduction of cancer-related pathways but is not sufficient to drive tumor formation in mice

Xianghong Kuang, Michael J. McAndrew, Lisa Maria Mustachio, Ying Jiun C. Chen, Boyko S. Atanassov, Kevin Lin, Yue Lu, Jianjun Shen, Andrew Salinger, Timothy Macatee, Sharon Y.R. Dent, Evangelia Koutelou

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

Usp22 overexpression is observed in several human cancers and is correlated with poor patient outcomes. The molecular basis underlying this correlation is not clear. Usp22 is the catalytic subunit of the deubiquitylation module in the SAGA histone-modifying complex, which regulates gene transcription. Our previous work demonstrated that the loss of Usp22 in mice leads to decreased expression of several components of receptor tyrosine kinase and TGFβ signaling pathways. To determine whether these pathways are upregulated when Usp22 is overexpressed, we created a mouse model that expresses high levels of Usp22 in all tissues. Phenotypic characterization of these mice revealed over-branching of the mammary glands in females. Transcriptomic analyses indicate the upregulation of key pathways involved in mammary gland branching in mammary epithelial cells derived from the Usp22-overexpressing mice, including estrogen receptor, ERK/MAPK, and TGFβ signaling. However, Usp22 overexpression did not lead to increased tumorigenesis in any tissue. Our findings indicate that elevated levels of Usp22 are not sufficient to induce tumors, but it may enhance signaling abnormalities associated with oncogenesis.

Original languageEnglish (US)
Article number4276
JournalCancers
Volume13
Issue number17
DOIs
StatePublished - Sep 1 2021

Keywords

  • Estrogen response early
  • Mammary gland epithelial cells
  • Migration
  • Mouse
  • PI3K-AKT
  • SAGA
  • Usp22 overexpression
  • WNT-beta catenin

ASJC Scopus subject areas

  • Oncology
  • Cancer Research

MD Anderson CCSG core facilities

  • Genetically Engineered Mouse Facility

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