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Emerling, D. E.

Publications and source records attributed to Emerling, D. E..

2 recordsLinked to original sources

Structure and functional diversity of antibodies targeting the P. falciparum circumsporozoite protein C-terminal domain

The Plasmodium falciparum circumsporozoite protein (PfCSP) is the major surface antigen on Pf sporozoites. WHO-recommended vaccines RTS,S/AS01E and R21/Matrix-M target the PfCSP major repeat region and C-terminal domain (ctCSP). Although multiple studies associated protection with antibody responses to ctCSP, only a few ctCSP-specific monoclonal antibodies (mAbs) have been characterized. Here, crystal structures of 11 Fab-ctCSP complexes reveal how mAbs against the conserved {beta}-epitope region achieve diverse modes of strain-transcending recognition, in contrast to mAbs to the hypervariable -epitope. Consistent with previous studies, ctCSP on sporozoites could be unmasked by mAbs that bind CSP repeats, with unmasking dependent on the mAb fine-specificity and binding mode. In vitro, ctCSP mAbs promoted stronger Fc-receptor signaling, cellular cytotoxicity, and phagocytosis than repeat region mAbs, while mAb combinations targeting distinct PfCSP epitopes modulated Fc-signaling and cellular cytotoxicity. This study provides a rationale for optimization of PfCSP-based immunogens to enhance Fc-mediated contributions to malaria vaccine efficacy.

microbiology↗

Structural characterization of MAM01 and other cost-effective engineered monoclonal antibodies for malaria prevention

Long-lasting and effective vaccines or monoclonal antibodies (mAbs) for malaria prevention are highly beneficial for people of all ages living in malaria-endemic regions. Recently, two highly protective human mAbs AB000224 (IGHV3-49/IGLV1-40) and AB007088 (IGHV3-33/IGKV1-5), which are encoded by different germline genes, were re-engineered and renamed as MAM01 and MS-1805, respectively, to improve their half-life, developability (including manufacturing), and cost-effectiveness according to WHO guidelines. MAM01 has completed phase 1 and 1b clinical trials (safety / PK / challenge) in US healthy naive adults and is in phase 1 trials (age-de-escalation studies) in Uganda. Here, we determined crystal structures of the antigen-binding fragments (Fabs) of engineered MAM01, MS-1805, and 7088 in complex with different regions of the Plasmodium falciparum (Pf) circumsporozoite protein (CSP), including junctional, minor, and major repeat regions. Notably, Fab 7088 features an extended CDRL3 comprising 10 amino acids (CDRL3:10) instead of the typical 8 amino acid CDRL3 (CDRL3:8) for VH3-33/VK1-5-encoded mAbs, revealing unique folding within its germline context. Structural comparisons showed that engineered antibodies retain the key molecular and hydrogen bond interactions with no significant conformational changes or loss in binding affinity. These findings demonstrate that the efficacy and affordability of human mAbs can be enhanced by selectively mutating residues in antibody framework regions without compromising binding affinity or epitope interaction.

biophysics↗