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Published on: May 18, 2016
Increased B cell survival and preferential activation of the memory compartment by a malaria polyclonal B cell
Daria Donati1, Bobo Mok, Arnaud Chêne
1Center for Infectious Medicine, Department of Medicine, Karolinska Institutet, Karolinska University Hospital Huddinge, Stockholm, Sweden. daria.donati@ki.se
Insights
Malaria protein CIDR1alpha activates B cells, particularly memory B cells, promoting their survival. This finding is relevant to understanding Burkitt's lymphoma risk in malaria-endemic regions.
Area of Science:
- Immunology
- Infectious Diseases
- Molecular Biology
Background:
- Chronic malaria is linked to B cell abnormalities, including polyclonal activation and autoantibody production.
- The Plasmodium falciparum erythrocyte membrane protein 1's CIDR1alpha domain was identified as a B cell activator.
Purpose of the Study:
- To investigate the mechanism of CIDR1alpha-mediated B cell activation.
- To determine the impact of CIDR1alpha on naive versus memory B cells.
- To explore the relevance of these findings to malaria pathogenesis and associated cancers.
Main Methods:
- Functional assays to assess B cell activation, apoptosis, and cell cycling.
- Analysis of gene expression profiles using cDNA microarrays.
- Comparison of CIDR1alpha activation with anti-Ig mediated activation.
Main Results:
- CIDR1alpha activates B cells despite low binding affinity to IgM and IgG.
- CIDR1alpha rescues B cells from apoptosis and increases cell cycling, preferentially activating memory B cells.
- CIDR1alpha induces distinct gene expression profiles compared to anti-Ig activation, engaging various immunological pathways.
Conclusions:
- Malaria infection, via CIDR1alpha, preferentially activates the memory B cell compartment.
- CIDR1alpha-induced B cell activation and survival contribute to understanding the increased risk of Burkitt's lymphoma in malaria-endemic areas.
Abstract:
Chronic malaria infection is characterized by polyclonal B cell activation, hyperglobulinemia, and elevated titers of autoantibodies. We have recently identified the cysteine-rich interdomain region 1alpha (CIDR1alpha) of the Plasmodium falciparum erythrocyte membrane protein 1 as a T cell-independent polyclonal B cell activator and Ig binding protein. Here, we show that, although the binding affinity of CIDR1alpha to human IgM and IgG is relatively low, B cell activation still proceeds. CIDR1alpha rescues tonsillar B cells from apoptosis, and increases the proportion of cycling cells. Comparison of the impact on naive and memory B cell compartment indicated that CIDR1alpha preferentially activates memory B lymphocytes. Analysis of the gene expression profiles induced by CIDR1alpha and anti-Ig activation using a cDNA microarray demonstrated a low degree of homology in the signatures imposed by both stimuli. The microarray data correlate with the functional analysis demonstrating that CIDR1alpha activates various immunological pathways and protects B cells from apoptosis. Together, the results provide evidence for a role of malaria in preferentially activating the memory B cell compartment. The polyclonal B cell activation and augmented survival induced by CIDR1alpha is of relevance for understanding the mechanisms behind the increased risk of Burkitt's lymphoma in malaria endemic areas.
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