| Literature DB >> 24115081 |
Abhijeet Kapoor1, Alex Travesset.
Abstract
We develop an intermediate resolution model, where the backbone is modeled with atomic resolution but the side chain with a single bead, by extending our previous model (Proteins (2013) DOI: 10.1002/prot.24269) to properly include proline, preproline residues and backbone rigidity. Starting from random configurations, the model properly folds 19 proteins (including a mutant 2A3D sequence) into native states containing β sheet, α helix, and mixed α/β. As a further test, the stability of H-RAS (a 169 residue protein, critical in many signaling pathways) is investigated: The protein is stable, with excellent agreement with experimental B-factors. Despite that proteins containing only α helices fold to their native state at lower backbone rigidity, and other limitations, which we discuss thoroughly, the model provides a reliable description of the dynamics as compared with all atom simulations, but does not constrain secondary structures as it is typically the case in more coarse-grained models. Further implications are described.Entities:
Keywords: GPUs; coarse graining; molecular dynamics; proteins; secondary structure; α helices; β sheets
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Year: 2013 PMID: 24115081 DOI: 10.1002/prot.24416
Source DB: PubMed Journal: Proteins ISSN: 0887-3585