Search PubMed⌕ Search

PubMed · 10089361

Optimizing Shake-and-Bake for proteins.

Abstract

Shake-and-Bake is a direct-methods procedure which has provided ab initio solutions for protein structures containing as many as 1000 independent non-H atoms. This algorithm extends the range of conventional direct methods by repetitively, unconditionally and automatically alternating reciprocal-space phase refinement with filtering in real space to impose constraints. The application of SnB to protein-sized molecules is significantly affected by the choice made for certain critical parameters, including the number of peaks used for density modification, the choice of phase-refinement method and the number of refinement cycles. The effects of parameter variation have been studied for six protein structures, all of which are solvable by Shake-and-Bake using data at 1.1 A or higher resolution. Solvability in the resolution range 1.2-1.4 A appears to be enhanced by the presence of heavier atoms (S, Cl). Furthermore, it appears that in this range the ratio of refinement cycles and triplet phase invariants to atoms in the structure must be increased. Large structures lacking atoms of any element heavier than oxygen also require non-traditional parameter values.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

C M Weeks, R Miller. 1999. Optimizing Shake-and-Bake for proteins.. https://doi.org/10.1107/s0907444998012633

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Clinical pharmacokinetic data of racemic drugs obtained by the indirect method following precolumn diastereomer formation: is the influence of racemization during chiral derivatization significant?

This report reviews the stereoselective data of a number of racemic drugs (n = 17) obtained from indirect chiral method (via diastereomer formation) in comparison to similar data generated by the application of a direct chiral method. While it was noted that the indirect method still continued to be used to characterize the stereoselective disposition of racemic drugs, the present review critically evaluates the issue of racemization that has the potential to skew the stereoselective data obtained from the indirect method. The review describes various remedies to counter and/or minimize the impact of racemization on the final outcome of the stereoselective analysis by the indirect method. On the basis of this review it could be concluded that the indirect method is a viable and important tool for gathering stereoselective data of racemic drugs used in medical practice as well for those racemic drugs still in discovery and developmental stages.

Methods↗