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Updated: Dec 30, 2025

Lung Tumor Cell Recruitment Assay
Published on: February 26, 2019
Activation of the pattern recognition receptor NOD1 augments colon cancer metastasis
Henry Y Jiang1,2, Sara Najmeh1,2, Guy Martel3
1Thoracic and Upper GI Cancer Research Laboratories, Research Institute of McGill University Health Centre, 1001 Decarie Boulevard, Block E, Lab #E02-4134, Montreal, QC, H4A 3J1, Canada.
Abstract:
While emerging data suggest nucleotide oligomerization domain receptor 1 (NOD1), a cytoplasmic pattern recognition receptor, may play an important and complementary role in the immune response to bacterial infection, its role in cancer metastasis is entirely unknown. Hence, we sought to determine the effects of NOD1 on metastasis. NOD1 expression in paired human primary colon cancer, human and murine colon cancer cells were determined using immunohistochemistry and immunoblotting (WB). Clinical significance of NOD1 was assessed using TCGA survival data. A series of in vitro and in vivo functional assays, including adhesion, migration, and metastasis, was conducted to assess the effect of NOD1. C12-iE-DAP, a highly selective NOD1 ligand derived from gram-negative bacteria, was used to activate NOD1. ML130, a specific NOD1 inhibitor, was used to block C12-iE-DAP stimulation. Stable knockdown (KD) of NOD1 in human colon cancer cells (HT29) was constructed with shRNA lentiviral transduction and the functional assays were thus repeated. Lastly, the predominant signaling pathway of NOD1-activation was identified using WB and functional assays in the presence of specific kinase inhibitors. Our data demonstrate that NOD1 is highly expressed in human colorectal cancer (CRC) and human and murine CRC cell lines. Clinically, we demonstrate that this increased NOD1 expression negatively impacts survival in patients with CRC. Subsequently, we identify NOD1 activation by C12-iE-DAP augments CRC cell adhesion, migration and metastasis. These effects are predominantly mediated via the p38 mitogen activated protein kinase (MAPK) pathway. This is the first study implicating NOD1 in cancer metastasis, and thus identifying this receptor as a putative therapeutic target.
Insights
Nucleotide oligomerization domain receptor 1 (NOD1) is highly expressed in colorectal cancer (CRC), negatively impacting patient survival. NOD1 activation promotes CRC cell adhesion, migration, and metastasis, identifying it as a potential therapeutic target.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Emerging data suggest nucleotide oligomerization domain receptor 1 (NOD1) plays a role in bacterial infection immunity.
- The role of NOD1 in cancer metastasis remains largely unexplored.
- This study investigates the impact of NOD1 on colorectal cancer (CRC) metastasis.
Purpose of the Study:
- To determine the expression levels and clinical significance of NOD1 in CRC.
- To elucidate the functional role of NOD1 in CRC cell adhesion, migration, and metastasis.
- To identify the signaling pathways involved in NOD1-mediated CRC metastasis.
Main Methods:
- Immunohistochemistry and Western blotting (WB) to assess NOD1 expression in CRC tissues and cell lines.
- TCGA survival data analysis to evaluate the clinical significance of NOD1 expression.
- In vitro and in vivo functional assays (adhesion, migration, metastasis) using NOD1 activator (C12-iE-DAP) and inhibitor (ML130).
- Stable NOD1 knockdown (KD) in HT29 cells and pathway analysis using kinase inhibitors.
Main Results:
- NOD1 is highly expressed in human and murine CRC tissues and cell lines.
- Increased NOD1 expression is associated with poorer survival in CRC patients.
- NOD1 activation significantly augments CRC cell adhesion, migration, and metastasis.
- The p38 mitogen-activated protein kinase (MAPK) pathway is predominantly involved in NOD1-mediated CRC metastasis.
Conclusions:
- NOD1 is upregulated in colorectal cancer and correlates with adverse clinical outcomes.
- NOD1 activation promotes key steps in the metastatic cascade of CRC.
- NOD1 signaling, particularly via the p38 MAPK pathway, represents a novel therapeutic target for CRC metastasis.
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