Identification of high-affinity anti-CD16A allotype-independent human antibody domains

Wei Li1, Hongjia Yang2, Dimiter S Dimitrov1

  • 1Protein Interactions Section, Cancer and Inflammation Program, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Frederick, MD 21702, USA.

Insights

Researchers identified small, human antibody domains (D6 and E11) that bind specifically to CD16A receptors on immune cells. These domains can be used to develop smaller, potentially more effective bispecific killer cell engagers (BiKEs) for cancer therapy.

Area of Science:

  • Immunology
  • Biotechnology
  • Structural Biology

Background:

  • CD16A (FcγRIIIA) is a key activating receptor on NK cells and macrophages, mediating antibody-dependent cell-mediated cytotoxicity (ADCC).
  • Bispecific killer cell engagers (BiKEs) targeting CD16A show promise in cancer therapy but are often large and may elicit immunogenicity.
  • There is a need for smaller, fully human biologics targeting CD16A to improve tissue penetration and reduce immune responses.

Purpose of the Study:

  • To identify and characterize novel, small, human antibody domains that specifically bind to the CD16A receptor.
  • To evaluate the potential of these domains for developing next-generation BiKEs and protein therapeutics.

Main Methods:

  • Screening a large human VH antibody domain library displayed on phage.
  • Binding assays (EC50 determination) for CD16A and other Fc gamma receptors (FcγRs).
  • Allotype binding studies, competition assays, molecular docking, and functional assays (IL-2 secretion).

Main Results:

  • Two human antibody domains, D6 and E11, were identified with high affinity (EC50 4nM and 8nM, respectively) for CD16A.
  • D6 and E11 demonstrated specificity for CD16A, not binding to other FcγRs, and recognized both CD16A allotypes.
  • Molecular modeling predicted binding to the CD16A D2 domain, and bivalent D6/E11 induced IL-2 secretion from CD16A-expressing cells.

Conclusions:

  • D6 and E11 represent novel, high-affinity, specific, and allotype-independent binders for CD16A.
  • These small antibody domains are suitable for engineering advanced BiKEs and other protein therapeutics with improved properties for cancer treatment.

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