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Consolidating critical binding determinants by noncyclic rearrangement of protein secondary structure.


ABSTRACT: We designed a single-chain variant of the Arc repressor homodimer in which the beta strands that contact operator DNA are connected by a hairpin turn and the alpha helices that form the tetrahelical scaffold of the dimer are attached by a short linker. The designed protein represents a noncyclic permutation of secondary structural elements in another single-chain Arc molecule (Arc-L1-Arc), in which the two subunits are fused by a single linker. The permuted protein binds operator DNA with nanomolar affinity, refolds on the sub-millisecond time scale, and is as stable as Arc-L1-Arc. The crystal structure of the permuted protein reveals an essentially wild-type fold, demonstrating that crucial folding information is not encoded in the wild-type order of secondary structure. Noncyclic rearrangement of secondary structure may allow grouping of critical active-site residues in other proteins and could be a useful tool for protein design and minimization.

SUBMITTER: Tabtiang RK 

PROVIDER: S-EPMC548995 | biostudies-literature | 2005 Feb

REPOSITORIES: biostudies-literature

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Consolidating critical binding determinants by noncyclic rearrangement of protein secondary structure.

Tabtiang Ramon K RK   Cezairliyan Brent O BO   Grant Robert A RA   Cochrane Jesse C JC   Sauer Robert T RT  

Proceedings of the National Academy of Sciences of the United States of America 20050202 7


We designed a single-chain variant of the Arc repressor homodimer in which the beta strands that contact operator DNA are connected by a hairpin turn and the alpha helices that form the tetrahelical scaffold of the dimer are attached by a short linker. The designed protein represents a noncyclic permutation of secondary structural elements in another single-chain Arc molecule (Arc-L1-Arc), in which the two subunits are fused by a single linker. The permuted protein binds operator DNA with nanomo  ...[more]

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