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Updated: Jun 17, 2025

Tumor Transplantation for Assessing the Dynamics of Tumor-Infiltrating CD8+ T Cells in Mice
Published on: June 12, 2021
Non-cell-autonomous suppression of tumor growth by RECK in immunocompetent mice
Tomoko Matsuzaki1,2, Joe Inoue3, Nagahiro Minato3
1Department of Molecular Oncology, Kyoto University Graduate School of Medicine, Kyoto, Japan.
Abstract:
RECK is a candidate tumor suppressor gene isolated as a gene that induces flat reversion in a cell line transformed by the KRAS oncogene. Since RECK knockout mice die in utero, they are not suitable for studying the effects of RECK on tumor formation. In this study, we found an increased incidence of spontaneous pulmonary adenomas in mice with reduced RECK expression (RECK-Hypo mice). To evaluate the effects of RECK expressed by either tumor cells or host cells on tumor growth, we established a tumorigenic cell line (MKER) from the kidney of a C57BL/6 mouse and performed syngeneic transplantation experiments. Our results indicate that when RECK expression is low in host cells, transplanted MKER cells grow faster and kill the animal more rapidly. Since RECK is required for the formation of proper fibrillin fibers that serve as a tissue reservoir for precursors of TGFβ-family cytokines, we assessed the levels of TGFβ1 in the peripheral blood. We found a significant increase in TGFβ1 in RECK-Hypo mice compared to wild-type mice. We also found that the proportion of FOXP3-positive regulatory T (Treg) cells among splenocytes was higher in RECK-Hypo mice compared to the control mice. Furthermore, the number of FOXP3-positive cells in spontaneous hematopoietic neoplasms in the lungs as well as tumors that formed after MKER transplantation was significantly higher in RECK-Hypo mice compared to the control mice. These findings indicate that RECK-mediated tumor suppression involves a non-cell-autonomous mechanism and that possible roles of TGFβ1 and Treg cells in such a mechanism warrant further study.
Insights
Reduced RECK expression in host cells promotes spontaneous lung tumors and accelerates transplanted tumor growth. This tumor suppression involves non-cell-autonomous mechanisms, potentially mediated by TGFβ1 and regulatory T cells.
Area of Science:
- Oncology
- Molecular Biology
- Immunology
Background:
- RECK (Reversion-Inducing Cysteine-Rich Protein with Kazal Motifs) is a candidate tumor suppressor gene.
- RECK knockout mice are not viable for studying its role in tumor formation.
- Reduced RECK expression is linked to increased tumor incidence.
Purpose of the Study:
- To investigate the role of RECK in spontaneous tumor formation.
- To evaluate the impact of RECK expression in host cells versus tumor cells on tumor growth.
- To explore the potential involvement of TGFβ1 and regulatory T cells in RECK-mediated tumor suppression.
Main Methods:
- Generation and analysis of RECK-Hypo mice with reduced RECK expression.
- Syngeneic transplantation of a tumorigenic kidney cell line (MKER) into RECK-Hypo and wild-type mice.
- Measurement of TGFβ1 levels in peripheral blood.
- Flow cytometry analysis of FOXP3-positive regulatory T (Treg) cells in splenocytes, lungs, and tumors.
Main Results:
- RECK-Hypo mice exhibited an increased incidence of spontaneous pulmonary adenomas.
- Reduced RECK expression in host cells accelerated transplanted tumor growth and reduced survival.
- Elevated TGFβ1 levels and a higher proportion of Treg cells were observed in RECK-Hypo mice.
- Increased FOXP3-positive cells were found in spontaneous and transplanted tumors in RECK-Hypo mice.
Conclusions:
- RECK-mediated tumor suppression operates through non-cell-autonomous mechanisms.
- TGFβ1 and Treg cells may play significant roles in RECK's tumor suppressive functions.
- Further research is warranted to elucidate the precise roles of TGFβ1 and Treg cells in RECK's mechanism.
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