| Literature DB >> 9822371 |
P B Harbury1, J J Plecs, B Tidor, T Alber, P S Kim.
Abstract
Recent advances in computational techniques have allowed the design of precise side-chain packing in proteins with predetermined, naturally occurring backbone structures. Because these methods do not model protein main-chain flexibility, they lack the breadth to explore novel backbone conformations. Here the de novo design of a family of alpha-helical bundle proteins with a right-handed superhelical twist is described. In the design, the overall protein fold was specified by hydrophobic-polar residue patterning, whereas the bundle oligomerization state, detailed main-chain conformation, and interior side-chain rotamers were engineered by computational enumerations of packing in alternate backbone structures. Main-chain flexibility was incorporated through an algebraic parameterization of the backbone. The designed peptides form alpha-helical dimers, trimers, and tetramers in accord with the design goals. The crystal structure of the tetramer matches the designed structure in atomic detail.Mesh:
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Year: 1998 PMID: 9822371 DOI: 10.1126/science.282.5393.1462
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728