4.1 Article

Isolation and characterization of anti-Fc gamma RIII (CD16) llama single-domain antibodies that activate natural killer cells

Journal

PROTEIN ENGINEERING DESIGN & SELECTION
Volume 21, Issue 1, Pages 1-10

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/protein/gzm064

Keywords

CD16; Fc gamma RIII; llama; phage display; single-domain antibodies

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Fc gamma RIII (CD16) plays an important role in the anti-tumor effects of therapeutic antibodies. Bi-specific antibodies (bsAbs) targeting Fc gamma RIII represent a powerful alternative to the recruitment of the receptor via the Fc fragment, but are not efficiently produced. Single-domain antibodies (sdAbs) endowed with many valuable structural features might help to bypass this problem. In the present work, we have isolated anti-Fc gamma RIII sdAbs (C21 and C28) from a phage library generated from a llama immunized with Fc gamma RIIIB extra-cellular domains. These sdAbs bind Fc gamma RIIIA(+) NK cells and Fc gamma RIIIB+ polymorphonuclear cells, but not Fc gamma RI+ or Fc gamma RII+ cells, as detected by indirect immunofluorescence. Competition experiments showed that C21 and C28 sdAbs bind different Fc gamma RIII epitopes, with C21 recognizing a linear and C28 a conformational epitope of the receptor. Surface plasmon resonance experiments showed that C21 and C28 sdAbs bind Fc gamma RIII with a K-D in the 10 and 80 nM range, respectively. Importantly, the engagement by both molecules of Fc gamma RIIIA expressed by transfected Jurkat T cells or by NK cells derived from peripheral blood induced a strong IL-2 and IFN-gamma production, respectively. These anti-Fc gamma RIII sdAbs represent versatile tools for generating bsAbs under various formats, able to recruit Fc gamma RIII killer cells to target and destroy tumor cells.

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