Bourne_1999_J.Biol.Chem_274_30370

Reference

Title : Conformational flexibility of the acetylcholinesterase tetramer suggested by x-ray crystallography - Bourne_1999_J.Biol.Chem_274_30370
Author(s) : Bourne Y , Grassi J , Bougis PE , Marchot P
Ref : Journal of Biological Chemistry , 274 :30370 , 1999
Abstract :

Acetylcholinesterase, a polymorphic enzyme, appears to form amphiphilic and nonamphiphilic tetramers from a single splice variant; this suggests discrete tetrameric arrangements where the amphipathic carboxyl-terminal sequences can be either buried or exposed. Two distinct, but related crystal structures of the soluble, trypsin-released tetramer of acetylcholinesterase from Electrophorus electricus were solved at 4.5 and 4.2 A resolution by molecular replacement. Resolution at these levels is sufficient to provide substantial information on the relative orientations of the subunits within the tetramer. The two structures, which show canonical homodimers of subunits assembled through four-helix bundles, reveal discrete geometries in the assembly of the dimers to form: (a) a loose, pseudo-square planar tetramer with antiparallel alignment of the two four-helix bundles and a large space in the center where the carboxyl-terminal sequences may be buried or (b) a compact, square nonplanar tetramer that may expose all four sequences on a single side. Comparison of these two structures points to significant conformational flexibility of the tetramer about the four-helix bundle axis and along the dimer-dimer interface. Hence, in solution, several conformational states of a flexible tetrameric arrangement of acetylcholinesterase catalytic subunits may exist to accommodate discrete carboxyl-terminal sequences of variable dimensions and amphipathicity.

PubMedSearch : Bourne_1999_J.Biol.Chem_274_30370
PubMedID: 10521413
Gene_locus related to this paper: eleel-ACHE

Related information

Gene_locus eleel-ACHE
Structure 1C2B    1C2O

Citations formats

Bourne Y, Grassi J, Bougis PE, Marchot P (1999)
Conformational flexibility of the acetylcholinesterase tetramer suggested by x-ray crystallography
Journal of Biological Chemistry 274 :30370

Bourne Y, Grassi J, Bougis PE, Marchot P (1999)
Journal of Biological Chemistry 274 :30370