M. Sandgren et al., The X-ray crystal structure of the Trichoderma reesei family 12 endoglucanase 3, Cel12A, at 1.9 angstrom resolution, J MOL BIOL, 308(2), 2001, pp. 295-310
We present the three-dimensional structure of Trichoderma reesei endoglucan
ase 3 (Cell2A), a small, 218 amino acid residue (24.5 kDa), neutral pi, gly
coside hydrolase family 12 cellulase that lacks a cellulose-binding module.
The structure has been determined using X-ray crystallography and refined
to 1.9 Angstrom resolution. The asymmetric unit consists of six noncrystall
ographic symmetry-related molecules that were exploited to improve initial
multiple isomorphous replacement phasing, and subsequent structure refineme
nt. The enzyme contains one disulfide bridge and is glycosylated at Asp164
by a single N-acetyl glucosamine residue. The protein has the expected fold
for a glycoside hydrolase clan-C family 12 enzyme. It contains two beta -s
heets, of six and nine strands, packed on top of one another, and one alpha
-helix. The concave surface of the nine-stranded beta -sheet forms a large
substrate-binding groove in which the active-site residues are located. In
the active site, we find a carboxylic acid trio, similar to that of glycos
ide hydrolase families 7 and 16. The strictly conserved Asp99 hydrogen bond
s to the nucleophile, the invariant Glu116. The binding crevice is lined wi
th both aromatic and polar amino acid side-chains which may play a role in
substrate binding. The structure of the fungal family 12 enzyme presented h
ere allows a complete structural characterization of the glycoside hydrolas
e-C clan. (C) 2001 Academic Press.