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Peptide models XLV: Conformational properties of N-formyl-L-methioninamide and its relevance to methionine in proteins
- Source :
- Proteins: Structure, Function, and Bioinformatics. 58:571-588
- Publication Year :
- 2004
- Publisher :
- Wiley, 2004.
-
Abstract
- The conformational space of the most biologically significant backbone folds of a suitable methionine peptide model was explored by density functional computational method. Using a medium [6-31G(d)] and a larger basis set [6-311++G(2d,2p)], the systematic exploration of low-energy backbone structures restricted for the "L-region" in the Ramachandran map of N-formyl-L-methioninamide results in conformers corresponding to the building units of an extended backbone structure (betaL), an inverse gamma-turn (gammaL), or a right-handed helical structure (alphaL). However, no poly-proline II type (epsilonL) fold was found, indicating that this conformer has no intrinsic stability, and highlighting the effect of molecular environment in stabilizing this backbone structure. This is in agreement with the abundance of the epsilonL-type backbone conformation of methionine found in proteins. Stability properties (DeltaE) and distinct backbone-side-chain interactions support the idea that specific intramolecular contacts are operative in the selection of the lowest energy conformers. Apart from the number of different folds, all stable conformers are within a 10 kcal x mol(-1) energy range, indicating the highly flexible behavior of methionine. This conformational feature can be important in supporting catalytic processes, facilitating protein folding and dimerization via metal ion binding. In both of the biological examples discussed (HIV-1 reverse transcriptase and PcoC copper-resistant protein), the conformational properties of Met residues were found to be of key importance. Spatial proximity to other types of residues or the same type of residue seems to be crucial for the structural integrity of a protein, whether Met is buried or exposed.
- Subjects :
- Models, Molecular
Proteomics
Protein Folding
Proline
Protein Conformation
Stereochemistry
Static Electricity
Biophysics
Molecular Conformation
Peptide
Models, Biological
Biochemistry
Protein Structure, Secondary
Metal
chemistry.chemical_compound
Methionine
Structural Biology
Escherichia coli
Amino Acids
Databases, Protein
Molecular Biology
Conformational isomerism
Basis set
chemistry.chemical_classification
Models, Statistical
N-Formylmethionine
Chemistry
Escherichia coli Proteins
Proteins
Hydrogen Bonding
HIV Reverse Transcriptase
Crystallography
Models, Chemical
visual_art
Intramolecular force
visual_art.visual_art_medium
Thermodynamics
Protein folding
Peptides
Ramachandran plot
Subjects
Details
- ISSN :
- 08873585
- Volume :
- 58
- Database :
- OpenAIRE
- Journal :
- Proteins: Structure, Function, and Bioinformatics
- Accession number :
- edsair.doi.dedup.....7c49860c3187b51b881c33a585fbda74
- Full Text :
- https://doi.org/10.1002/prot.20307