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Dual Roles for CXCL4 Chemokines and CXCR3 in Angiogenesis and Invasion of Pancreatic Cancer
Cathy Quemener1,2, Jessica Baud1,2, Kevin Boyé1,2
1INSERM U1029, Pessac, France.
Abstract:
The CXCL4 paralog CXCL4L1 is a less studied chemokine that has been suggested to exert an antiangiogenic function. However, CXCL4L1 is also expressed in patient tumors, tumor cell lines, and murine xenografts, prompting a more detailed analysis of its role in cancer pathogenesis. We used genetic and antibody-based approaches to attenuate CXCL4L1 in models of pancreatic ductal adenocarcinoma (PDAC). Mechanisms of expression were assessed in cell coculture experiments, murine, and avian xenotransplants, including through an evaluation of CpG methylation and mutation of critical CpG residues. CXCL4L1 gene expression was increased greatly in primary and metastatic PDAC. We found that myofibroblasts triggered cues in the tumor microenvironment, which led to induction of CXCL4L1 in tumor cells. CXCL4L1 expression was also controlled by epigenetic modifications at critical CpG islands, which were mapped. CXCL4L1 inhibited angiogenesis but also affected tumor development more directly, depending on the tumor cell type. In vivo administration of an mAb against CXCL4L1 demonstrated a blockade in the growth of tumors positive for CXCR3, a critical receptor for CXCL4 ligands. Our findings define a protumorigenic role in PDAC development for endogenous CXCL4L1, which is independent of its antiangiogenic function. Cancer Res; 76(22); 6507-19. ©2016 AACR.
Insights
Chemokine CXCL4-like 1 (CXCL4L1) promotes pancreatic ductal adenocarcinoma (PDAC) growth by influencing the tumor microenvironment and epigenetic modifications, independent of its antiangiogenic effects.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- CXCL4L1 (CXCL4 paralog) is a chemokine with suggested antiangiogenic function.
- CXCL4L1 is found in patient tumors, cell lines, and xenografts, necessitating investigation into its cancer role.
Purpose of the Study:
- To analyze the role of CXCL4L1 in pancreatic ductal adenocarcinoma (PDAC) pathogenesis.
- To investigate the mechanisms of CXCL4L1 expression and its function in PDAC models.
Main Methods:
- Genetic and antibody-based approaches were used to attenuate CXCL4L1 in PDAC models.
- Mechanisms of expression were studied using cell coculture, xenotransplants, and analysis of CpG methylation.
- In vivo administration of anti-CXCL4L1 mAb was employed.
Main Results:
- CXCL4L1 gene expression was significantly elevated in primary and metastatic PDAC.
- Myofibroblasts in the tumor microenvironment induced CXCL4L1 in tumor cells.
- CXCL4L1 exhibited both antiangiogenic and direct protumorigenic effects, with the latter being crucial in CXCR3-positive tumors.
Conclusions:
- Endogenous CXCL4L1 plays a protumorigenic role in PDAC development.
- This protumorigenic role is independent of CXCL4L1's antiangiogenic function.
- CXCL4L1 expression is regulated by tumor microenvironment cues and epigenetic modifications.
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