REPACKING PROTEIN CORES WITH BACKBONE FREEDOM - STRUCTURE PREDICTION FOR COILED COILS

Citation
Pb. Harbury et al., REPACKING PROTEIN CORES WITH BACKBONE FREEDOM - STRUCTURE PREDICTION FOR COILED COILS, Proceedings of the National Academy of Sciences of the United Statesof America, 92(18), 1995, pp. 8408-8412
Citations number
41
Categorie Soggetti
Multidisciplinary Sciences
ISSN journal
00278424
Volume
92
Issue
18
Year of publication
1995
Pages
8408 - 8412
Database
ISI
SICI code
0027-8424(1995)92:18<8408:RPCWBF>2.0.ZU;2-1
Abstract
Progress in homology modeling and protein design has generated conside rable interest in methods for predicting side-chain packing in the hyd rophobic cores of proteins. Present techniques are not practically use ful, however, because they are unable to model protein main-chain flex ibility, Parameterization of backbone motions may represent a general and efficient method to incorporate backbone relaxation into such fixe d main-chain models, To test this notion, we introduce a method for tr eating explicitly the backbone motions of cr-helical bundles based on an algebraic parameterization proposed by Francis Crick in 1953 [Crick , P. H. C. (1953) Acta Crystallogr, 6, 685-689], Given only the core a mino acid sequence, a simple calculation can rapidly reproduce the cry stallographic main-chain and core side-chain structures of three coile d coils (one dimer, one trimer, and one tetramer) to within 0.6-Angstr om root-mean-square deviations. The speed of the predictive method [ap proximate to 3 min per rotamer choice on a Silicon Graphics (Mountain View, CA) 4D/35 computer] permits it to be used as a design tool.