structure of the malaria antigen ama1 in complex with a growth-inhibitory antibody疟疾抗原ama1的结构在复杂growth-inhibitory抗体.pdf
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Structure of the Malaria Antigen AMA1
in Complex with a Growth-Inhibitory Antibody
1,2[ 3[ 2[ 3 3 2 1,2*
Andrew M. Coley , Aditi Gupta , Vince J. Murphy , Tao Bai , Hanna Kim , Robin F. Anders , Michael Foley ,
3*
Adrian H. Batchelor
1 Cooperative Research Center for Diagnostics, Department of Biochemistry, La Trobe University, Victoria, Australia, 2 Department of Biochemistry, La Trobe University,
Victoria, Australia, 3 University of Maryland School of Pharmacy, Baltimore, Maryland, United States of America
Identifying functionally critical regions of the malaria antigen AMA1 (apical membrane antigen 1) is necessary to
understand the significance of the polymorphisms within this antigen for vaccine development. The crystal structure of
AMA1 in complex with the Fab fragment of inhibitory monoclonal antibody 1F9 reveals that 1F9 binds to the AMA1
solvent-exposed hydrophobic trough, confirming its importance. 1F9 uses the heavy and light chain complementarity-
determining regions (CDRs) to wrap around the polymorphic loops adjacent to the trough, but uses a ridge of
˚ 2
framework residues to bind to the hydrophobic trough. The resulting 1F9-AMA1–combined buried surface of 2,470 A
is considerably larger than previously reported Fab–antigen interfaces. Mutations of polymorphic AMA1 residues
within the 1F9 epitope disrupt 1F9 binding and dramatically reduce the binding of affinity-purified human antibodies.
Moreover, 1F9 binding to AMA1 is competed by naturally acquired hu
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