Antivitamins B12 have a growing biomedical impact as robust B12-dummies. Here, the potential antivitamin B12 2,4-difluorophenyl-ethynyl-cobalamin (F2PhEtyCbl) was prepared and its 3D-structure was studied in solution and in the crystal. Chemically inert F2PhEtyCbl resisted thermolysis of its (Co-C)-bond at 100°C, was stable to bright day light and also remained intact during prolonged storage in aqueous solution at room temperature. It bound to the human B12-processing enzyme CblC with high affinity (KD = 130 nM) in the presence of the co-substrate glutathione (GSH). F2PhEtyCbl withstood tailoring by CblC, and it also stabilized the ternary complex with GSH. The crystal structure of this abortive assembly afforded first insights into the binding interactions of an antivitamin B12 with CblC, as well as into the organization of GSH and a base-off cobalamin in the active site of this enzyme.