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Evaluation of the Interplay Between the Complement Protein C1q and Hyaluronic Acid in Promoting Cell Adhesion
Published on: June 15, 2019
The C1q and gC1qR axis as a novel checkpoint inhibitor in cancer
Berhane Ghebrehiwet1,2, Michal Zaniewski1, Audrey Fernandez1
1Department of Medicine, Stony Brook University, Stony Brook, NY, United States.
Abstract:
Understanding at the molecular level of the cell biology of tumors has led to significant treatment advances in the past. Despite such advances however, development of therapy resistance and tumor recurrence are still unresolved major challenges. This therefore underscores the need to identify novel tumor targets and develop corresponding therapies to supplement existing biologic and cytotoxic approaches so that a deeper and more sustained treatment responses could be achieved. The complement system is emerging as a potential novel target for cancer therapy. Data accumulated to date show that complement proteins, and in particular C1q and its receptors cC1qR/CR and gC1qR/p33/HABP1, are overexpressed in most cancer cells and together are involved not only in shaping the inflammatory tumor microenvironment, but also in the regulation of angiogenesis, metastasis, and cell proliferation. In addition to the soluble form of C1q that is found in plasma, the C1q molecule is also found anchored on the cell membrane of monocytes, macrophages, dendritic cells, and cancer cells, via a 22aa long leader peptide found only in the A-chain. This orientation leaves its 6 globular heads exposed outwardly and thus available for high affinity binding to a wide range of molecular ligands that enhance tumor cell survival, migration, and proliferation. Similarly, the gC1qR molecule is not only overexpressed in most cancer types but is also released into the microenvironment where it has been shown to be associated with cancer cell proliferation and metastasis by activation of the complement and kinin systems. Co-culture of either T cells or cancer cells with purified C1q or anti-gC1qR has been shown to induce an anti-proliferative response. It is therefore postulated that in the tumor microenvironment, the interaction between C1q expressing cancer cells and gC1qR bearing cytotoxic T cells results in T cell suppression in a manner akin to the PD-L1 and PD-1 interaction.
Insights
The complement system, including C1q and gC1qR, is overexpressed in cancers, promoting tumor growth and metastasis. Targeting these molecules may overcome therapy resistance and enhance anti-cancer immune responses.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Despite advances in cancer therapy, treatment resistance and tumor recurrence remain significant challenges.
- Novel therapeutic targets are needed to improve treatment responses and overcome existing limitations.
- The complement system is an emerging target in cancer therapy due to its role in tumor biology.
Purpose of the Study:
- To investigate the role of complement proteins C1q and its receptors (cC1qR/CR, gC1qR/p33/HABP1) in cancer.
- To explore the potential of targeting the complement system for novel cancer therapies.
- To understand the interaction between C1q-expressing cancer cells and gC1qR-bearing T cells in the tumor microenvironment.
Main Methods:
- Analysis of complement protein and receptor expression in cancer cells.
- Investigating the involvement of C1q and gC1qR in tumor microenvironment regulation, angiogenesis, metastasis, and proliferation.
- Co-culture experiments with T cells or cancer cells using purified C1q or anti-gC1qR.
Main Results:
- C1q and its receptors (cC1qR/CR, gC1qR/p33/HABP1) are overexpressed in most cancer cells and contribute to tumor progression.
- C1q and gC1qR are involved in regulating the inflammatory tumor microenvironment, angiogenesis, metastasis, and cell proliferation.
- Co-culture studies demonstrated an anti-proliferative response induced by C1q or anti-gC1qR, suggesting T cell suppression.
Conclusions:
- The complement system, particularly C1q and gC1qR, represents a promising novel target for cancer therapy.
- Targeting C1q and gC1qR may help overcome therapeutic resistance and enhance anti-cancer immune responses.
- The interaction between C1q-expressing cancer cells and gC1qR-bearing T cells may suppress anti-tumor immunity, similar to PD-L1/PD-1 interactions.
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