Title of article :
Irreversible Engineering of the Multielement-Binding Antibody 2D12.5 and Its Complementary Ligands
Author/Authors :
Meares، Claude F. نويسنده , , Whetstone، Paul A. نويسنده , , Corneillie، Todd M. نويسنده , , Lee، Kelvin C. نويسنده , , Wong، Jeremy P. نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2004
Pages :
-1391
From page :
1392
To page :
0
Abstract :
Engineering the permanent formation of a receptor-ligand complex has a number of potential applications in chemistry and biology, including targeted medical imaging and therapy. Starting from the crystal structure of the rare-earth-DOTA binding antibody 2D12.5 (Corneillie, T. M., Fisher, A. J., and Meares, C. F. (2003) J. Am. Chem. Soc. 125, 15039-15048), we used the site-directed incorporation of cysteine nucleophiles at the periphery of the antibodyʹs binding site, paired with the chemical design of a weakly electrophilic ligand, to produce a receptor-ligand pair that associates efficiently and permanently. Protein residues proximal to the ligandʹs side chain were identified for engineering cysteine mutants. Fab fragments incorporating a cysteine at position 54, 55, or 56 of the heavy chain (complementarity determining region 2) were designed from the structure and then cloned, expressed in Drosophila S2 cells, and tested for reactivity with mildly electrophilic DOTA-yttrium ligands. All showed permanent binding activity, indicating that there is some tolerance for the location of the reactive mutant on the protein surface near the binding site. The G54C Fab mutant displayed the highest expression levels and permanent binding activity in initial experiments and was produced in high yield for further study. Upon examining the behavior of the G54C mutant with a small set of electrophilic ligands, differences in reactivity were observed which indicated that the substituents near the electrophilic atom can be important determinants of permanent binding. The G54C mutant permanently attaches to Y3+ complexes of (S)-2-(4-acrylamidobenzyl)-DOTA with a half-time of ~~13 min at 37 (degree)C, making it potentially useful for in vivo pretargeting applications.
Keywords :
Gene regulation , male reproductive tract , spermatid , testis , spermatogenesis
Journal title :
Bioconjugate Chemistry
Serial Year :
2004
Journal title :
Bioconjugate Chemistry
Record number :
103525
Link To Document :
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