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Published on: April 15, 2014
Targeting PGLYRP1 promotes antitumor immunity while inhibiting autoimmune neuroinflammation
Alexandra Schnell1,2, Linglin Huang1,3,4, Brianna M L Regan1
1Gene Lay Institute of Immunology and Inflammation, Brigham and Women's Hospital, Mass General Hospital and Harvard Medical School, Boston, MA, USA.
Abstract:
Co-inhibitory and checkpoint molecules suppress T cell function in the tumor microenvironment, thereby rendering T cells dysfunctional. Although immune checkpoint blockade is a successful treatment option for multiple human cancers, severe autoimmune-like adverse effects can limit its application. Here, we show that the gene encoding peptidoglycan recognition protein 1 (PGLYRP1) is highly coexpressed with genes encoding co-inhibitory molecules, indicating that it might be a promising target for cancer immunotherapy. Genetic deletion of Pglyrp1 in mice led to decreased tumor growth and an increased activation/effector phenotype in CD8+ T cells, suggesting an inhibitory function of PGLYRP1 in CD8+ T cells. Surprisingly, genetic deletion of Pglyrp1 protected against the development of experimental autoimmune encephalomyelitis, a model of autoimmune disease in the central nervous system. PGLYRP1-deficient myeloid cells had a defect in antigen presentation and T cell activation, indicating that PGLYRP1 might function as a proinflammatory molecule in myeloid cells during autoimmunity. These results highlight PGLYRP1 as a promising target for immunotherapy that, when targeted, elicits a potent antitumor immune response while protecting against some forms of tissue inflammation and autoimmunity.
Insights
Targeting peptidoglycan recognition protein 1 (PGLYRP1) enhances anti-tumor immunity and T cell function. This approach may also mitigate autoimmune adverse effects common in cancer immunotherapy.
Area of Science:
- Immunology
- Oncology
- Autoimmunity
Background:
- Immune checkpoint blockade is effective in cancer treatment but causes autoimmune side effects.
- Co-inhibitory molecules in the tumor microenvironment impair T cell function.
- Peptidoglycan recognition protein 1 (PGLYRP1) is coexpressed with co-inhibitory molecules.
Purpose of the Study:
- To investigate the role of PGLYRP1 in anti-tumor immunity and autoimmunity.
- To evaluate PGLYRP1 as a potential target for cancer immunotherapy.
Main Methods:
- Genetic deletion of Pglyrp1 in mouse models.
- Analysis of tumor growth and CD8+ T cell phenotype.
- Assessment of experimental autoimmune encephalomyelitis development.
- Evaluation of myeloid cell antigen presentation and T cell activation.
Main Results:
- Pglyrp1 deletion reduced tumor growth and enhanced CD8+ T cell activation.
- Pglyrp1 deficiency protected against experimental autoimmune encephalomyelitis.
- PGLYRP1-deficient myeloid cells showed impaired antigen presentation and T cell activation.
Conclusions:
- PGLYRP1 acts as an inhibitor of anti-tumor CD8+ T cell responses.
- PGLYRP1 promotes inflammation and autoimmunity in myeloid cells.
- Targeting PGLYRP1 offers a dual therapeutic strategy for cancer immunotherapy, enhancing anti-tumor immunity while reducing autoimmunity.
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