Accounting for a mirror-image conformation as a subtle effect in protein folding.
basic_science · Level V
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- Record sourced from PubMed, PMID 24912167.
- Also identified by DOI 10.1073/pnas.1407837111 and PMC identifier 4060689.
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Abstract
By using local (free-energy profiles along the amino acid sequence and (13)C(α) chemical shifts) and global (principal component) analyses to examine the molecular dynamics of protein-folding trajectories, generated with the coarse-grained united-residue force field, for the B domain of staphylococcal protein A, we are able to (i) provide the main reason for formation of the mirror-image conformation of this protein, namely, a slow formation of the second loop and part of the third helix (Asp29-Asn35), caused by the presence of multiple local conformational states in this portion of the protein; (ii) show that formation of the mirror-image topology is a subtle effect resulting from local interactions; (iii) provide a mechanism for how protein A overcomes the barrier between the metastable mirror-image state and the native state; and (iv) offer a plausible reason to explain why protein A does not remain in the metastable mirror-image state even though the mirror-image and native conformations are at least energetically compatible.
Medical subject headings
- Protein Conformation
- Protein Folding
- Protein Structure, Secondary
- Proteins