STRUCTURE OF HIS94-]ASP CARBONIC-ANHYDRASE-II IN A NEW CRYSTALLINE FORM REVEALS A PARTIALLY OCCUPIED ZINC-BINDING SITE

Citation
Ja. Ippolito et al., STRUCTURE OF HIS94-]ASP CARBONIC-ANHYDRASE-II IN A NEW CRYSTALLINE FORM REVEALS A PARTIALLY OCCUPIED ZINC-BINDING SITE, Protein engineering, 8(10), 1995, pp. 975-980
Citations number
22
Categorie Soggetti
Biology
Journal title
ISSN journal
02692139
Volume
8
Issue
10
Year of publication
1995
Pages
975 - 980
Database
ISI
SICI code
0269-2139(1995)8:10<975:SOHCIA>2.0.ZU;2-H
Abstract
The structure of histidine 94-->aspartate (H94D) carbonic anhydrase II (CAII) crystallized in an orthorhombic space group has been determine d to 2.5 Angstrom resolution, This crystal form is not isomorphous wit h monoclinic wild-type enzyme crystals or with the monoclinic crystal form of H94D CAII reported earlier [Kiefer,L.L., Ippolito,J.A., Fierke ,C.A. and Christianson,D.W. (1993) J. Am. Chem. Soc., 115, 12581-12582 ]. In monoclinic H94D CAII, a fully occupied zinc ion is tetrahedrally coordinated by D94, H96, H119 and a water molecule, In orthorhombic H 94D CAII, a partially occupied zinc ion is coordinated by H96 and H119 and only weakly coordinated by a disordered D94 side chain, These dif ferences are particularly surprising given that the two crystal forms co-precipitate in the same drop in the same experiment, Re-refinement of the orthorhombic crystal form of H94C CAII and comparison with its corresponding monoclinic crystal form yield similar results, It appear s that partial-but not full-zinc dissociation accompanies the crystall ization of CAII variants in the orthorhombic crystal form, and signifi cant differences on the protein surface presumably affect the relative stability of each crystal lattice, These results underscore an unexpe cted ambiguity in this protein engineering experiment: which crystal s tructure of H94D CAII should be correlated with functional measurement s made in solution?