Calreticulin binds Zn2+ with the relatively high affinity/low capacity
, To determine the location of the Zn2+ binding site in calreticulin d
ifferent domains of the protein were expressed in E, coli, using the g
lutathione S-transferase fusion protein system, and their Zn2+-depende
nt interaction with Zn2+-IDA-agarose were determined, Three distinct d
omains were used in this study: the N + P-domain (the first 290 residu
es); the N-domain (residues 1-182) and the proline-rich P-domain (resi
dues 180-273). The N + P-domain bound to the Zn2+-IDA-agarose and were
eluted with an increasing concentration of imidazole, The N-domain al
so bound Zn-65(2+) as measured by the overlay method, The P-domain did
not interact with the Zn2+-IDA-agarose and it did not bind any detect
able amount of Zn2+, Chemical modification of calreticulin with diethy
l pyrocarbonate indicated that five out of seven histidines were prote
cted in the presence of Zn2+ but they were modified by diethyl pyrocar
bonate in the absence of Zn2+ suggesting that these residues may be in
volved in Zn2+ binding to calreticulin. We conclude that Zn2+ binding
sites in calreticulin are localized to the N-domain of the protein, re
gion that is not involved in Ca2+ binding to calreticulin.