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Updated: Nov 20, 2025

A Method to Assess Fc-mediated Effector Functions Induced by Influenza Hemagglutinin Specific Antibodies
Published on: February 23, 2018
C4b Binding Protein Acts as an Innate Immune Effector Against Influenza A Virus
Praveen M Varghese1,2, Valarmathy Murugaiah1, Nazar Beirag1
1Biosciences, College of Health and Life Sciences, Brunel University London, Uxbridge, United Kingdom.
Insights
C4b Binding Protein (C4BP) inhibits Influenza A Virus (IAV) entry for H1N1 but promotes H3N2 infection. This complement protein has strain-dependent roles against IAV, independent of complement activation.
Area of Science:
- Immunology
- Virology
- Complement System
Background:
- C4b Binding Protein (C4BP) is a key regulator of the classical and lectin complement pathways.
- Pathogens like Streptococcus pyogenes and Flavivirus exploit C4BP to evade immune responses.
- The complement-independent functions of C4BP against viral pathogens remain largely unexplored.
Purpose of the Study:
- To investigate the direct antiviral activity of C4BP against Influenza A Virus (IAV) strains.
- To determine the binding sites and viral proteins targeted by C4BP.
- To elucidate the impact of C4BP on viral entry and host immune responses.
Main Methods:
- Binding assays to assess C4BP interaction with IAV subtypes (H1N1, H3N2).
- Identification of C4BP binding domains (CCP 1-2, 4-5, 7-8) and IAV proteins (HA, NA, M1).
- Cell-based assays using A549 lung epithelial cells and pseudotyped viral particles to evaluate viral entry and replication.
- Quantitative PCR to measure host inflammatory gene expression (IFN-α, IL-12, NFκB, TNF-α, RANTES, IL-6).
Main Results:
- C4BP binds to both H1N1 and H3N2 IAV subtypes, with preferential binding to H3N2 by CCP1-2 domains.
- C4BP interacts with IAV envelope proteins Haemagglutinin, Neuraminidase, and Matrix protein 1.
- C4BP suppresses H1N1 infection and viral entry but promotes H3N2 infection and entry.
- C4BP differentially modulates host inflammatory responses, downregulating pro-inflammatory cytokines for H1N1 and upregulating them for H3N2.
Conclusions:
- C4BP exhibits strain-dependent effects on IAV, acting as an entry inhibitor for H1N1.
- C4BP's antiviral activity against IAV is independent of complement regulation.
- Complement control proteins like C4BP may possess uncharacterized roles in host defense against influenza viruses.
Abstract:
C4b Binding Protein (C4BP) is a major fluid phase inhibitor of the classical and lectin pathways of the complement system. Complement inhibition is achieved by binding to and restricting the role of activated complement component C4b. C4BP functions as a co-factor for factor I in proteolytic inactivation of both soluble and cell surface-bound C4b, thus restricting the formation of the C3-convertase, C4b2a. C4BP also accelerates the natural decay/dissociation of the C3 convertase. This makes C4BP a prime target for exploitation by pathogens to escape complement attack, as seen in Streptococcus pyogenes or Flavivirus. Here, we examined whether C4BP can act on its own in a complement independent manner, against pathogens. C4BP bound H1N1 and H3N2 subtypes of Influenza A Virus (IAV) most likely via multiple sites in Complement Control Protein (CCP) 1-2, 4-5, and 7-8 domains of its α-chain. In addition, C4BP CCP1-2 bound H3N2 better than H1N1. C4BP bound three IAV envelope proteins: Haemagglutinin (~70 kDa), Neuraminidase (~55 kDa), and Matrix protein 1 (~25kDa). C4BP suppressed H1N1 subtype infection into the lung epithelial cell line, A549, while it promoted infection by H3N2 subtype. C4BP restricted viral entry for H1N1 but had the opposite effect on H3N2, as evident from experiments using pseudo-typed viral particles. C4BP downregulated mRNA levels of pro-inflammatory IFN-α, IL-12, and NFκB in the case of H1N1, while it promoted a pro-inflammatory immune response by upregulating IFN- α, TNF-α, RANTES, and IL-6 in the case of H3N2. We conclude that C4BP differentially modulates the efficacy of IAV entry, and hence, replication in a target cell in a strain-dependent manner, and acts as an entry inhibitor for H1N1. Thus, CCP containing complement proteins such as factor H and C4BP may have additional defense roles against IAV that do not rely on the regulation of complement activation.
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