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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.
Abstract:
NOTCH1 signaling, a vital regulator of cell proliferation and differentiation, is widely involved in the occurrence and development of malignant tumors. Pharmacological regulation of NOTCH1 is promising in tumor immunotherapy, whereas the effective rate of existing therapies remains low. NOTCH1 functions, as a cancer suppressor or a cancer promoter in different cancers, is engaged in the crosstalk between the immune microenvironment and cancer cells, posing a major challenge to immunotherapy. Therefore, a comprehensive view of the overall situation of NOTCH1-associated immune infiltration in pan-cancer should be built. The relation between NOTCH1 and immune infiltration was initially investigated in this paper. In this study, the data originated from the Genotype-Tissue Expression (GTEx) and the Cancer Genome Atlas (TCGA) databases were input into multiple online bioinformatic tools to study the characteristics of NOTCH1 in pan-cancer. We found that there was obvious heterogeneity in the NOTCH1-associated tumor immune infiltration in pan-cancer. In accordance with the heterogeneity, pan-cancer mainly fell into two categories, i.e., cancers that NOTCH1 promoted immune infiltration (termed hot tumors) and NOTCH1 inhibited immune infiltration (termed cold tumors). We further analyzed the changes of immune infiltration in pan-carcinoma species from the perspectives of NOTCH1 expression, mutation, gene function, tumor metastasis and drugs. NOTCH1 expression was significantly up-regulated in cold tumors but down-regulated in hot tumors. The Gene ontology (GO) enrichment analysis of NOTCH1 with the two categories placed stress on angiogenesis and protein dealkylation, respectively. Further, the gene sets of angiogenesis facilitated immune infiltration, whereas the gene sets of protein dealkylation hindered immune infiltration. The tsRNA associated with NOTCH1 is a type of angiogenin that potentially exerts a significant influence on angiogenesis. We have conducted a meticulous analysis of the function of this tsRNA. NOTCH1 was conducive to cancer-associated fibroblasts (CAFs) immune infiltration, while the metastatic process was more dependent on the differentiation and angiogenesis function of NOTCH1. Accordingly, the heterogeneity of NOTCH1 in immune infiltration was extensively analyzed in this study based on the pan-cancer study, which can contribute to the formulation of specific immunotherapy strategies.
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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