» Articles » PMID: 35220887

Promotes Colorectal Cancer Cells Adhesion to Endothelial Cells and Facilitates Extravasation and Metastasis by Inducing ALPK1/NF-κB/ICAM1 Axis

Overview
Journal Gut Microbes
Date 2022 Feb 28
PMID 35220887
Authors
Affiliations
Soon will be listed here.
Abstract

Metastasis is the leading cause of death for colorectal cancer (CRC) patients, and the spreading tumor cells adhesion to endothelial cells is a critical step for extravasation and further distant metastasis. Previous studies have documented the important roles of gut microbiota-host interactions in the CRC malignancy, and () was reported to increase proliferation and invasive activities of CRC cells. However, the potential functions and underlying mechanisms of in the interactions between CRC cells and endothelial cells and subsequent extravasation remain unclear. Here, we uncovered that enhanced the adhesion of CRC cells to endothelial cells, promoted extravasation and metastasis by inducing ICAM1 expression. Mechanistically, we identified that induced a new pattern recognition receptor ALPK1 to activate NF-κB pathway, resulting in the upregulation of ICAM1. Interestingly, the abundance of in tumor tissues of CRC patients was positively associated with the expression levels of ALPK1 and ICAM1. Moreover, high expression of ALPK1 or ICAM1 was significantly associated with a shorter overall survival time of CRC patients. This study provides a new insight into the role of gut microbiota in engaging into the distant metastasis of CRC cells.

Citing Articles

Crosstalk between gut microbiotas and fatty acid metabolism in colorectal cancer.

Zhang H, Tian Y, Xu C, Chen M, Xiang Z, Gu L Cell Death Discov. 2025; 11(1):78.

PMID: 40011436 PMC: 11865559. DOI: 10.1038/s41420-025-02364-5.


Implications of intratumoral microbiota in tumor metastasis: a special perspective of microorganisms in tumorigenesis and clinical therapeutics.

Zhang L, Duan X, Zhao Y, Zhang D, Zhang Y Front Immunol. 2025; 16:1526589.

PMID: 39995663 PMC: 11847830. DOI: 10.3389/fimmu.2025.1526589.


Interplay of m6A RNA methylation and gut microbiota in modulating gut injury.

Wang H, Han J, Zhang X Gut Microbes. 2025; 17(1):2467213.

PMID: 39960310 PMC: 11834532. DOI: 10.1080/19490976.2025.2467213.


Unraveling the Role of in Colorectal Cancer: Molecular Mechanisms and Pathogenic Insights.

Galasso L, Termite F, Mignini I, Esposto G, Borriello R, Vitale F Cancers (Basel). 2025; 17(3).

PMID: 39941737 PMC: 11816155. DOI: 10.3390/cancers17030368.


Tumor microbiome: roles in tumor initiation, progression, and therapy.

Zhang S, Huang J, Jiang Z, Tong H, Ma X, Liu Y Mol Biomed. 2025; 6(1):9.

PMID: 39921821 PMC: 11807048. DOI: 10.1186/s43556-025-00248-9.


References
1.
Rubinstein M, Baik J, Lagana S, Han R, Raab W, Sahoo D . promotes colorectal cancer by inducing Wnt/β-catenin modulator Annexin A1. EMBO Rep. 2019; 20(4). PMC: 6446206. DOI: 10.15252/embr.201847638. View

2.
Huang C, Li N, Li Z, Chang A, Chen Y, Zhao T . Tumour-derived Interleukin 35 promotes pancreatic ductal adenocarcinoma cell extravasation and metastasis by inducing ICAM1 expression. Nat Commun. 2017; 8:14035. PMC: 5253665. DOI: 10.1038/ncomms14035. View

3.
Liu S, Li N, Yu X, Xiao X, Cheng K, Hu J . Expression of intercellular adhesion molecule 1 by hepatocellular carcinoma stem cells and circulating tumor cells. Gastroenterology. 2013; 144(5):1031-1041.e10. DOI: 10.1053/j.gastro.2013.01.046. View

4.
Bullman S, Pedamallu C, Sicinska E, Clancy T, Zhang X, Cai D . Analysis of persistence and antibiotic response in colorectal cancer. Science. 2017; 358(6369):1443-1448. PMC: 5823247. DOI: 10.1126/science.aal5240. View

5.
Fan L, Xu C, Ge Q, Lin Y, Wong C, Qi Y . Suppresses Colorectal Tumorigenesis by Inducing TLR2/NLRP3-Mediated M1-Like TAMs. Cancer Immunol Res. 2021; 9(10):1111-1124. DOI: 10.1158/2326-6066.CIR-20-1019. View