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Sim, R. B.

Publications and source records attributed to Sim, R. B..

2 recordsLinked to original sources

The human complement factor B-C3b complex: Investigation of the interaction using C3b bound to thiol-Sepharose

Factor B, a serine protease proenzyme and part of the complement system, binds to other complement proteins such as C3b and properdin. While it is known to be activated by factor D, other interactions that interfere with the binding between Factor B and C3b are less well-understood. We attached C3b to a thiol Sepharose via its free SH group and conducted a competition assay employing 125I-labelled factor B to study competitive binding. Two anti-C3d monoclonal antibodies (F49b and 4C2) were found to partially inhibit the binding of Factor B to C3b. The inhibitory effects of these monoclonal antibodies were found to be dose-dependent. 4C2 was found to have a maximum inhibition of 50%, while the maximum inhibition by F49b was [~]40%. In contrast, two anti-C3c monoclonal antibodies (F39b and F20b) were able to enhance the formation of the factor B-C3b complex in a dose-dependent manner. Competition binding studies with isolated C3 fragments further supported the involvement of the C3d region in factor B binding, as C3d inhibited the binding of factor B to C3b completely. Furthermore, additional competition binding studies conducted with each of the three domains of factor B (Ba, vWF and SP) demonstrated that each domain independently inhibited the binding of intact factor B to C3b by [~]50%.

immunology↗

Human complement Factor H and Properdin act as soluble pattern recognition receptors and differentially modulate SARS-CoV-2 Infection

Severe cases of SARS-CoV-2 infection are characterised by an imbalanced immune response, excessive inflammation, and the development of acute respiratory distress syndrome, which can lead to multiorgan failure and death. Several studies have demonstrated dysregulated complement activity as an indicator of immunopathogenesis in the SARS-CoV-2 infection. Notably, the complement alternative pathway has been implicated in driving the excessive inflammation during severe SARS-CoV-2 infection. Reduced levels of factor H (FH), a down-regulator of the alternative pathway, and increased levels of properdin (Factor P/FP), the only known up-regulator of the alternative pathway, have been observed in individuals with severe COVID-19 infection. The present study investigated the complement activation-independent, and a more direct role of FH and FP against SARS-CoV-2 infection. Using direct ELISA, the interactions of FH and FP with the SARS-CoV-2 spike (S) and receptor binding domain (RBD) were assessed. Using S protein expressing lentiviral pseudotypes, the cell binding and luciferase-based virus entry assays were employed to assess the potential modulatory effects of FH, FP, and recombinant thrombospondin repeats 4 and 5 (TSR4+5) on SARS-CoV-2 cell entry. We also evaluated the immunomodulatory functions of FH and FP in the cytokine response triggered by SARS-CoV-2 pseudotypes via RT-qPCR. SARS-CoV-2 S and RBD proteins were found to bind both FH and FP. Treatment of A549 cells expressing human ACE2 and TMPRSS2 with FP or TSR4+5 resulted in increased cell entry and binding of SARS-CoV-2 pseudotypes. In silico studies revealed that FP increases affinity between SARS-CoV-2 and host ACE2. The impact of FP on viral cell entry and binding was reversed by anti-FP antibody treatment in A549-hACE2+TMPRSS2 cells. However, FH treatment reduced the cell entry and binding of SARS-CoV-2 lentiviral pseudotypes. Furthermore, the A549-hACE2+TMPRSS2 cells challenged with SARS-CoV-2 spike, envelope, nucleoprotein, and membrane protein expressing alphaviral pseudotypes pre-treated with FP or TSR4+5, exhibited upregulation of the transcripts of pro-inflammatory cytokines, such as IL-1{beta}, IL-8, IL-6, TNF-, IFN- and RANTES (as well as NF-{kappa}B). Conversely, FH pre-treatment downregulated the expression of these pro-inflammatory cytokines. Treatment of A549-hACE2+TMPRSS2 cells with FP increased S protein-mediated NF-{kappa}B activation, while FH treatment reduced it. These findings suggest that FH may act as an inhibitor of SARS-CoV-2 cell entry and binding, thereby attenuating the infection-associated inflammatory response in a complement activation-independent manner. FP may contribute to viral cell entry, binding, and exacerbating the immune response. That may result in potentially influencing the severity of the infection.

immunology↗