CD200-CD200R signaling suppresses anti-tumor responses independently of CD200 expression on the tumor
T P Rygiel1, G Karnam, G Goverse
1Department of Immunology, University Medical Center Utrecht, Utrecht, The Netherlands.
Abstract:
Expression of CD200, the gene encoding the ligand for the inhibitory immune receptor CD200R, is an independent prognostic factor for various forms of leukemia predicting worse overall survival of the patients. The enhanced expression of CD200 on the tumors implies that anti-tumor responses can be enhanced by blockage of the CD200-CD200R interaction. Indeed, antibody-mediated blockade of the CD200-CD200R inhibitory axis is currently evaluated in clinical tests to boost immune responses against CD200-expressing tumors. Here, we show that mice lacking CD200, the exclusive ligand for CD200R, are resistant to chemical skin carcinogenesis. Importantly, CD200R controls tumor outgrowth independently of CD200 expression by the tumor cells themselves. Furthermore, Cd200(-/-) mice do not become tolerant to intranasally administered antigens, suggesting that tumor rejection is normally suppressed through CD200-induced immune tolerance. Decreased tumor outgrowth is accompanied by increased expression of the proinflammatory cytokines interleukin (IL)-1β and IL-6 by the lymph node (LN) dendritic cells. During carcinogenesis, skin-draining LNs of Cd200(-/-) mice contain increased numbers of IL-17-producing FoxP3(+) cells, which preferentially home to the tumors. Thus, the CD200-CD200R axis induces tolerance to external and tumor antigens and influences the T-regulatory/Th17 cell ratio. We demonstrate for the first time that the absence of CD200R signaling inhibits outgrowth of an endogenous tumor irrespective of CD200 expression by the tumor cells. This important paradigm shift leads to a much broader applicability of CD200-blockade in the treatment of tumors.
Insights
The CD200-CD200R pathway suppresses anti-tumor immunity and promotes immune tolerance. Blocking this interaction, even when tumors don't express CD200, could enhance cancer treatments.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- CD200 expression is a poor prognostic factor in leukemia.
- CD200-CD200R interaction inhibits immune responses.
- Blocking CD200-CD200R is being explored for cancer therapy.
Purpose of the Study:
- To investigate the role of CD200 in chemical skin carcinogenesis.
- To determine if CD200R controls tumor outgrowth independently of tumor CD200 expression.
- To explore the mechanism of CD200-mediated immune tolerance.
Main Methods:
- Mice lacking CD200 (Cd200(-/-)) were used to study chemical skin carcinogenesis.
- Assessment of immune tolerance to intranasally administered antigens.
- Analysis of cytokine expression (IL-1β, IL-6) in lymph node dendritic cells.
- Quantification of IL-17-producing FoxP3(+) cells in skin-draining lymph nodes.
Main Results:
- Cd200(-/-) mice showed resistance to chemical skin carcinogenesis.
- Tumor outgrowth was controlled by CD200R independently of tumor CD200 expression.
- Cd200(-/-) mice did not develop tolerance to intranasal antigens.
- Increased proinflammatory cytokines (IL-1β, IL-6) and IL-17-producing FoxP3(+) cells were observed in Cd200(-/-) mice.
- CD200-CD200R axis induces immune tolerance and influences T-regulatory/Th17 balance.
Conclusions:
- The CD200-CD200R axis plays a critical role in suppressing anti-tumor immunity and promoting immune tolerance.
- Absence of CD200R signaling inhibits endogenous tumor outgrowth regardless of tumor CD200 expression.
- This finding broadens the potential application of CD200 blockade for cancer treatment.
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