Comprehensive Analysis Reveals USP45 as a Novel Putative Oncogene in Pan-Cancer

Kai Li1,2, Qian Wang1,2, Hua Bian1,2

  • 1Zhang Zhongjing College of Chinese Medicine, Nanyang Institute of Technology, Nanyang, China.

Insights

The deubiquitinating enzyme USP45 is upregulated in most cancers, correlating with poor patient survival and influencing tumor immunity. This study reveals USP45

Area of Science:

  • Oncology
  • Molecular Biology
  • Genomics

Background:

  • Deubiquitinating enzymes regulate protein stability and are implicated in cancer development.
  • The specific role of USP45 in tumorigenesis remains largely uncharacterized.
  • Understanding USP45's function is crucial for cancer research.

Purpose of the Study:

  • To investigate the pan-cancer expression, clinical significance, and molecular mechanisms of USP45.
  • To explore the relationship between USP45 and tumor microenvironment factors.
  • To elucidate the oncogenic potential of USP45 across various cancer types.

Main Methods:

  • Pan-cancer analysis of USP45 expression and survival using TCGA, GTEx, and CCLE databases.
  • Analysis of USP45 genetic alterations (mutations, copy number variations) via cBioPortal.
  • Correlation studies on USP45 with methylation, heterogeneity, stemness, and immune infiltration using TIMER2.0 and Sangerbox.
  • Construction of regulatory networks (ceRNA, PPI, downstream) using bioinformatics tools.
  • Immunohistochemical validation of USP45 protein expression.

Main Results:

  • USP45 is significantly upregulated in a majority of cancers, associated with poorer overall and recurrence-free survival.
  • Genetic alterations including structural variants, mutations, and copy number variations of USP45 were identified.
  • USP45 expression correlates with mRNA methylation, tumor heterogeneity, and stemness.
  • USP45 positively correlates with immune checkpoint molecules (e.g., PD-L1) but negatively with immune cell infiltration (NK, Th1, macrophages, dendritic cells).
  • Comprehensive regulatory networks for USP45 were established.

Conclusions:

  • USP45 exhibits a significant oncogenic role across multiple cancer types.
  • USP45 dysregulation impacts tumor progression, microenvironment, and patient outcomes.
  • This study provides a foundation for further investigation into USP45 as a potential therapeutic target.

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