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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 Receptors: Focus on gC1qR/p33 (C1qBP, p32, HABP-1)1
Berhane Ghebrehiwet1, Brian V Geisbrecht2, Xin Xu2
1The Departments of Medicine, Stony Brook University, Stony Brook, NY 11794-8161 USA.
Insights
Globular C1q receptor (gC1qR) binds numerous proteins, impacting inflammation, infection, and cancer. This review focuses on gC1qR
Area of Science:
- Immunology
- Molecular Biology
- Biochemistry
Background:
- C1q binding proteins are crucial in immune responses.
- Globular C1q receptor (gC1qR) is a multifunctional protein involved in various cellular processes.
- gC1qR interacts with diverse ligands in plasma, on cell surfaces, and on pathogens.
Purpose of the Study:
- To review the structure and function of gC1qR.
- To highlight gC1qR's roles in inflammation, infection, and cancer.
- To explore gC1qR as a therapeutic target.
Main Methods:
- Literature review of studies on gC1qR structure and function.
- Analysis of gC1qR interactions with plasma proteins, cellular molecules, and pathogen ligands.
- Examination of gC1qR's involvement in disease pathogenesis.
Main Results:
- gC1qR binds blood coagulation proteins (e.g., HK, Factor XII, fibrinogen, thrombin, vitronectin).
- gC1qR modulates fibrin formation and activates the kinin/kallikrein system, generating bradykinin.
- gC1qR contributes to tumor cell survival, growth, and invasion, and acts as a pathogen recognition receptor (PRR).
Conclusions:
- gC1qR is a critical mediator in inflammation, infection, and cancer.
- gC1qR's diverse interactions underscore its significance in disease.
- gC1qR represents a promising target for novel therapeutic strategies.
Abstract:
In the past several years, a number of C1q binding surface proteins or receptors have been described. This is not of course surprising considering the complexity of the C1q molecule and its ability to bind to a wide range of cellular and plasma proteins via both its collagen-like [cC1q] region and its heterotrimeric globular heads [gC1q] each of which in turn is capable of binding a specific ligand. However, while each of these "receptor" molecules undoubtedly plays a specific function within its restricted microenvironment, and therefore merits full attention, this review nonetheless, will singularly focus on the structure and function of gC1qR-a multi-functional and multi-compartmental protein, which plays an important role in inflammation, infection, and cancer. Although first identified as a receptor for C1q, gC1qR has been shown to bind to a plethora of proteins found in plasma, on the cell surface and on pathogenic microorganisms. The plasma proteins that bind to gC1qR are mostly blood coagulation proteins and include high molecular weight kininogen [HK], Factor XII [Hageman factor], fibrinogen, thrombin [FII], and multimeric vitronectin. This suggests that gC1qR can play an important role in modulating not only of fibrin formation, particularly at local sites of immune injury and/or inflammation, but by activating the kinin/kallikrein system, it is also able to generate, bradykinin, a powerful vasoactive peptide that is largely responsible for the swelling seen in angioedema. Another important function of gC1qR is in cancer, where it has been shown to play a role in tumor cell survival, growth and metastatic invasion by interacting with critical molecules in the tumor cell microenvironment including those of the complement system and kinin system. Finally, by virtue of its ability to interact with a growing list of pathogen-associated molecules, including bacterial and viral ligands, gC1qR is becoming recognized as an important pathogen recognition receptor [PRR]. Given the numerous roles it plays in a growing list of disease settings, gC1qR has now become a potential target for the development of monoclonal antibody-based and/or small molecule-based therapies.
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