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7YG2

Cryo-EM structure of human IgM-Fc in complex with the J chain and the DBL domain of DBLMSP2

Summary for 7YG2
Entry DOI10.2210/pdb7yg2/pdb
EMDB information33805
DescriptorDBLMSP2, Immunoglobulin heavy constant mu, Immunoglobulin J chain, ... (5 entities in total)
Functional Keywordsmalaria, immunoglobin, immune system
Biological sourcePlasmodium falciparum (malaria parasite P. falciparum)
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Total number of polymer chains12
Total formula weight473183.46
Authors
Shen, H.,Ji, C.,Xiao, J. (deposition date: 2022-07-09, release date: 2023-03-29, Last modification date: 2024-10-09)
Primary citationJi, C.,Shen, H.,Su, C.,Li, Y.,Chen, S.,Sharp, T.H.,Xiao, J.
Plasmodium falciparum has evolved multiple mechanisms to hijack human immunoglobulin M.
Nat Commun, 14:2650-2650, 2023
Cited by
PubMed Abstract: Plasmodium falciparum causes the most severe malaria in humans. Immunoglobulin M (IgM) serves as the first line of humoral defense against infection and potently activates the complement pathway to facilitate P. falciparum clearance. A number of P. falciparum proteins bind IgM, leading to immune evasion and severe disease. However, the underlying molecular mechanisms remain unknown. Here, using high-resolution cryo-electron microscopy, we delineate how P. falciparum proteins VAR2CSA, TM284VAR1, DBLMSP, and DBLMSP2 target IgM. Each protein binds IgM in a different manner, and together they present a variety of Duffy-binding-like domain-IgM interaction modes. We further show that these proteins interfere directly with IgM-mediated complement activation in vitro, with VAR2CSA exhibiting the most potent inhibitory effect. These results underscore the importance of IgM for human adaptation of P. falciparum and provide critical insights into its immune evasion mechanism.
PubMed: 37156765
DOI: 10.1038/s41467-023-38320-z
PDB entries with the same primary citation
Experimental method
ELECTRON MICROSCOPY (3.32 Å)
Structure validation

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