K. Ishikawa et al., The structure of human MRP8, a member of the S100 calcium-binding protein family, by MAD phasing at 1.9 angstrom resolution, ACT CRYST D, 56, 2000, pp. 559-566
The structure of human MRP8 in the calcium-bound form was determined at 1.9
Angstrom resolution by X-ray crystallography. The structure was initially
solved by MAD phasing of an ytterbium-substituted crystal and was refined a
gainst data obtained from a Ca2+-bound crystal. The dimeric form of MRP8 wa
s stabilized by hydrophobic interactions between mutually wrapped helices.
There were two EF-hand motifs per monomer and each EF-hand bound one Ca2+ w
ith a different affinity [the affinity of the C-terminal EF-hand (EF-2) for
Ca2+ was stronger than that of the N-terminal EF-hand (EF-1)]. Furthermore
, replacement with Yb3+ occurred in the C-terminal EF-hand only, suggesting
a more flexible nature for EF-2 than for EF-1. This, combined with previou
s observations that the helix in EF-2 (helix III) undergoes a large conform
ational change upon calcium binding, suggests that the C-terminal EF-hand (
EF-2) plays a role as a trigger for Ca2+-induced conformational change.