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Updated: Jan 5, 2026

Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
NANOG helps cancer cells escape NK cell attack by downregulating ICAM1 during tumorigenesis
Kotaro Saga1, Jinhee Park2, Keisuke Nimura2
1Division of Gene Therapy Science, Osaka University Graduate School of Medicine, 2-2 Yamada-oka, Suita, Osaka, 565-0871, Japan. saga@gts.med.osaka-u.ac.jp.
Background:
At the beginning of tumorigenesis, newly born cancer cells must successfully avoid attack by the immune system. Although most abnormal cells are efficiently identified and destroyed by the immune system, particularly by NK cells, the molecular mechanisms by which newly born cancer cells evade NK cell surveillance are not fully understood.
Methods:
NK cell resistance of highly tumorigenic population of human prostate cancer (PCa) cells were confirmed by xenograft in SCID mice with or without NK cell neutralization. The mechanisms by which the tumorigenic PCa cells evaded NK cell attack were investigated by RNAseq, ChIPseq, generation of several transformants and xenograft in SCID mice.
Results:
Here, we show that PCa cells have a strengthened ability to escape NK cell attack due to NANOG, a pluripotent-related transcription factor, mediating the repression of ICAM1, a cell adhesion molecule, during tumorigenesis. Mechanistically, NANOG directly binds to the region upstream of ICAM1. As the binding between NANOG and the upstream ICAM1 region increases, p300 binding to this region is diminished, resulting in decreased ICAM1 expression. High NANOG expression confers PCa cells the ability to resist NK cell attack via the repression of ICAM1. Consistent with these results, low ICAM1 expression is significantly correlated with a high recurrence rate in patients with PCa.
Conclusions:
Our findings indicate that repression of ICAM1 is a critical mechanism by which cancer cells evade attack from NK cells during tumorigenesis. These results suggest a pivotal role of NANOG in establishing a gene expression profile for escaping the immune system.
Insights
Newly discovered cancer cells evade immune attack by repressing ICAM1 expression, a process mediated by the NANOG transcription factor. This mechanism is crucial for tumor development and is linked to prostate cancer recurrence.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Mechanisms
Background:
- Tumorigenesis requires cancer cells to evade immune surveillance, particularly Natural Killer (NK) cell detection.
- The precise molecular strategies employed by nascent cancer cells to escape NK cell-mediated destruction remain incompletely elucidated.
Purpose of the Study:
- To investigate the molecular mechanisms underlying NK cell resistance in highly tumorigenic prostate cancer (PCa) cells.
- To identify key factors and pathways involved in cancer cell evasion of immune attack during tumorigenesis.
Main Methods:
- Confirmation of NK cell resistance in human PCa xenografts in SCID mice.
- Investigation of evasion mechanisms using RNAseq, ChIPseq, and genetic manipulation.
- Analysis of NANOG binding to the ICAM1 promoter region and its effect on p300 binding and ICAM1 expression.
Main Results:
- NANOG, a pluripotent-related transcription factor, directly represses ICAM1 (Intercellular Adhesion Molecule 1) expression in PCa cells.
- Increased NANOG binding to the ICAM1 upstream region diminishes p300 binding, leading to decreased ICAM1 expression.
- High NANOG expression confers resistance to NK cell attack by downregulating ICAM1; low ICAM1 expression correlates with higher PCa recurrence rates.
Conclusions:
- Repression of ICAM1 by NANOG is a critical mechanism for cancer cells to evade NK cell surveillance during tumorigenesis.
- NANOG plays a significant role in establishing an immune-evasive gene expression profile in cancer cells.
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