Protein structures and complexes: what they reveal about the interactions that stabilize them
- 15 October 1993
- journal article
- Published by The Royal Society in Philosophical Transactions A
- Vol. 345 (1674) , 113-129
- https://doi.org/10.1098/rsta.1993.0123
Abstract
The rapid increase in the number of high-quality protein structures provides an expanding knowledge resource about interactions involved in stabilizing protein three-dimensional structures and the complexes they form with other molecules. In this paper we first review the results of some recent analyses of protein structure, including restrictions on local conformation, and a study of the geometry of hydrogen bonds. Then we consider how such empirical data can be used as a test bed for energy calculations, by using the observed spatial distributions of side chain/atom interactions to assess three different methods for modelling atomic interactions in proteins. We have also derived a new empirical solvation potential which aims to reproduce the hydrophobic effect. To conclude we address the problem of molecular recognition and consider what we can deduce about the interactions involved in the binding of peptides to proteins.Keywords
This publication has 23 references indexed in Scilit:
- X-ray-crystallographic studies of complexes of pepstatin A and a statine-containing human renin inhibitor with endothiapepsinBiochemical Journal, 1993
- A new approach to protein fold recognitionNature, 1992
- Solution structure of a calmodulin-target peptide complex by multidimensional NMRScience, 1992
- Structure of a Peptide Inhibitor Bound to the Catalytic Subunit of Cyclic Adenosine Monophosphate-Dependent Protein KinaseScience, 1991
- Polarity as a criterion in protein designProtein Engineering, Design and Selection, 1989
- Solvation energy in protein folding and bindingNature, 1986
- A model for the geometries of Van der Waals complexesCanadian Journal of Chemistry, 1985
- THREE-DIMENSIONAL STRUCTURE OF MEMBRANE AND SURFACE PROTEINSAnnual Review of Biochemistry, 1984
- Dictionary of protein secondary structure: Pattern recognition of hydrogen‐bonded and geometrical featuresBiopolymers, 1983
- CHARMM: A program for macromolecular energy, minimization, and dynamics calculationsJournal of Computational Chemistry, 1983