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Investigating the function of Fc-specific binding of IgM to P lasmodium falciparum erythrocyte membrane protein 1 mediating erythrocyte rosetting.
- Source :
- Cellular Microbiology; Jun2015, Vol. 17 Issue 6, p819-831, 13p
- Publication Year :
- 2015
-
Abstract
- Acquired protection from P lasmodium falciparum malaria takes years to develop, probably reflecting the ability of the parasites to evade immunity. A recent example of this is the binding of the F<subscript>c</subscript> region of IgM to VAR2CSA-type PfEMP1. This interferes with specific IgG recognition and phagocytosis of opsonized infected erythrocytes ( IEs) without compromising the placental IE adhesion mediated by this PfEMP1 type. IgM also binds via F<subscript>c</subscript> to several other PfEMP1 proteins, where it has been proposed to facilitate rosetting (binding of uninfected erythrocytes to a central IE). To further dissect the functional role of F<subscript>c</subscript>-mediated IgM binding to PfEMP1, we studied the PfEMP1 protein HB3VAR06, which mediates rosetting and binds IgM. Binding of IgM to this PfEMP1 involved the F<subscript>c</subscript> domains Cμ3- Cμ4 in IgM and the penultimate DBL domain ( DBLζ2) at the C-terminus of HB3VAR06. However, IgM binding did not inhibit specific IgG labelling of HB3VAR06 or shield IgG-opsonized IEs from phagocytosis. Instead, IgM was required for rosetting, and each pentameric IgM molecule could bind two HB3VAR06 molecules. Together, our data indicate that the primary function of F<subscript>c</subscript>-mediated IgM binding in rosetting is not to shield IE from specific IgG recognition and phagocytosis as in VAR2CSA-type PfEMP1. Rather, the function appears to be strengthening of IE-erythrocyte interactions. In conclusion, our study provides new evidence on the molecular details and functional significance of rosetting, a long-recognized marker of parasites that cause severe P . falciparum malaria. [ABSTRACT FROM AUTHOR]
Details
- Language :
- English
- ISSN :
- 14625814
- Volume :
- 17
- Issue :
- 6
- Database :
- Complementary Index
- Journal :
- Cellular Microbiology
- Publication Type :
- Academic Journal
- Accession number :
- 102702842
- Full Text :
- https://doi.org/10.1111/cmi.12403