The heterogeneity of NOTCH1 to tumor immune infiltration in pan-cancer

XiaoJun Duan1,2, Rihan Wu3, Mingyang Zhang1

  • 1School of Life Science, Inner Mongolia University, Hohhot, Inner Mongolia, China.

Scientific Reports
|November 14, 2024
PubMed

Insights

NOTCH1 signaling heterogeneity in pan-cancer influences immune infiltration, classifying tumors as "hot" or "cold." This finding aids in developing targeted cancer immunotherapies by understanding NOTCH1

Area of Science:

  • Oncology
  • Immunology
  • Bioinformatics

Background:

  • NOTCH1 signaling is crucial for cell processes and implicated in various cancers.
  • Existing cancer immunotherapies targeting NOTCH1 have limited efficacy.
  • NOTCH1's dual role (suppressor/promoter) and its interaction with the tumor immune microenvironment complicate immunotherapy.

Purpose of the Study:

  • To comprehensively analyze NOTCH1-associated immune infiltration across various cancer types (pan-cancer).
  • To investigate the heterogeneity of NOTCH1's role in tumor immune infiltration.
  • To provide insights for developing tailored cancer immunotherapy strategies.

Main Methods:

  • Utilized data from Genotype-Tissue Expression (GTEx) and The Cancer Genome Atlas (TCGA) databases.
  • Employed multiple online bioinformatics tools for pan-cancer analysis of NOTCH1.
  • Conducted Gene Ontology (GO) enrichment analysis and investigated NOTCH1 expression, mutation, gene function, metastasis, and drug associations.

Main Results:

  • Identified significant heterogeneity in NOTCH1-associated immune infiltration across pan-cancer.
  • Classified cancers into two categories: NOTCH1-promoted immune infiltration (hot tumors) and NOTCH1-inhibited immune infiltration (cold tumors).
  • NOTCH1 expression was inversely correlated with tumor type (up-regulated in cold, down-regulated in hot tumors); angiogenesis and protein dealkylation were key associated functions.

Conclusions:

  • NOTCH1 exhibits heterogeneous roles in immune infiltration, distinguishing 'hot' and 'cold' tumors.
  • Angiogenesis, influenced by NOTCH1 and tsRNA, promotes immune infiltration, while protein dealkylation hinders it.
  • Findings support the development of specific immunotherapies based on NOTCH1's context-dependent function in different cancers.

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