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Biology subjects

Bahr, L. E.

Publications and source records attributed to Bahr, L. E..

2 recordsLinked to original sources

DENV-specific IgA contributes protective and non-pathologic function during antibody-dependent enhancement of DENV infection

Dengue represents a growing public health burden worldwide, accounting for approximately 100 million symptomatic cases and tens of thousands of fatalities yearly. Prior infection with one serotype of dengue virus (DENV) is the greatest known risk factor for severe disease upon secondary infection with a heterologous serotype, a risk which increases as serotypes co-circulate in endemic regions. This disease risk is thought to be mediated by IgG-isotype antibodies raised during a primary infection, which poorly neutralize heterologous DENV serotypes and instead opsonize virions for uptake by Fc{gamma}R-bearing cells. This antibody-dependent enhancement (ADE) of infection leads to a larger proportion of susceptible cells infected, higher viremia and greater immunopathology. We have previously characterized the induction of a serum IgA response, along with the typical IgM and IgG responses, during dengue infection, and have shown that DENV-reactive IgA can neutralize DENV and competitively antagonize IgG-mediated ADE. Here, we evaluate the potential for IgA itself to cause ADE. We show that IgG, but not IgA, mediated ADE of infection in cells expressing both FcR and Fc{gamma}Rs. IgG-mediated ADE stimulated significantly higher pro-inflammatory cytokine production by primary human macrophages, while IgA did not affect, or slightly suppressed, this production. Mechanistically, we show that DENV/IgG immune complexes bind susceptible cells significantly more efficiently than DENV/IgA complexes or virus alone. Finally, we show that over the course of primary dengue infection, the expression of Fc{gamma}RI (CD64) increases during the period of acute viremia, while Fc{gamma}RIIa (CD32) and FcR (CD89) expression decreases, thereby further limiting the ability of IgA to facilitate ADE in the presence of DENV. Overall, these data illustrate the distinct protective role of IgA during ADE of dengue infection and highlight the potential therapeutic and prognostic value of DENV-specific IgA.

immunology↗

Soluble NS1 antagonizes IgG- and IgA-mediated monocytic phagocytosis of DENV infected cells

Dengue virus (DENV) is endemic in over 100 countries, infecting an estimated 400 million individuals every year. Infection with DENV raises a significant antibody response, primarily consisting of antibodies targeting viral (structural) proteins. However, not all DENV antigens are part of the virion itself, as the DENV genome encodes several non-structural (NS) proteins. One of these, NS1, has been shown to be antigenic and is expressed on the membrane of DENV-infected cells. IgG and IgA isotype antibodies that bind NS1 are detectable in serum following DENV infection and are also capable of interacting with Fc receptors expressed on professional phagocytes. Our study aims to determine if NS1-binding IgG and IgA isotype antibodies contribute to the clearance of DENV-infected cells by professional phagocytes through antibody mediated phagocytosis/trogocytosis. Using an in vitro model of trogocytosis we observed that both IgG and IgA isotype antibodies can facilitate facilitating monocytic uptake of DENV NS1 expressing plasma membrane in an additive fashion. This process was dependent on the expression of Fc{gamma}RI (CD64) and FcR (CD89) for IgG and IgA mediated membrane uptake, respectively. Furthermore, this process was antagonized by the presence of soluble NS1, suggesting that the production of soluble NS1 by infected cells may serve as an immunological chaff, thereby antagonizing opsonization and clearance of infected cells by NS1-specific IgG and IgA isotype antibodies.

immunology↗