It has previously been documented that Zn 2+ inhibits TrkAmediated effects of NGF. To evaluate the ability of Zn 2+ to attenuate the biological activities of NGF mediated by p75 NTR , we characterized the effects of this transition metal cation on both binding and the pro-apoptotic properties of the NGFp75 NTR interaction. Binding of NGF to p75 NTR displayed higher affinity in embryonic chick retinal cells than in PC12 cells. NGF induced apoptosis in dissociated cultures of chick neural retina. The addition of 100 mM Zn 2+ inhibited binding and chemical cross-linking of 125 I-NGF to p75 NTR , and also attenuated apoptosis mediated by this ligand-receptor interaction. These studies lead to the conclusion that Zn 2+ antagonizes NGF/p75 NTR -mediated signaling, suggesting that the effect of this transition metal cation can be either pro-or anti-apoptotic depending on the cellular context. Cell Death and Differentiation (2001) 8, 451 ± 456.