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Self-assembly of coiled-coil tetramers in the 1.40 A structure of a leucine-zipper mutant.


ABSTRACT: The hydrophobic core of the GCN4 leucine-zipper dimerization domain is formed by a parallel helical association between nonpolar side chains at the a and d positions of the heptad repeat. Here we report a self-assembling coiled-coil array formed by the GCN4-pAe peptide that differs from the wild-type GCN4 leucine zipper by alanine substitutions at three charged e positions. GCN4-pAe is incompletely folded in normal solution conditions yet self-assembles into an antiparallel tetraplex in crystals by formation of unanticipated hydrophobic seams linking the last two heptads of two parallel double-stranded coiled coils. The GCN4-pAe tetramers in the lattice associate laterally through the identical interactions to those in the intramolecular dimer-dimer interface. The van der Waals packing interaction in the solid state controls extended supramolecular assembly of the protein, providing an unusual atomic scale view of a mesostructure.

SUBMITTER: Deng Y 

PROVIDER: S-EPMC2203300 | biostudies-literature | 2007 Feb

REPOSITORIES: biostudies-literature

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Self-assembly of coiled-coil tetramers in the 1.40 A structure of a leucine-zipper mutant.

Deng Yiqun Y   Zheng Qi Q   Liu Jie J   Cheng Chao-Sheng CS   Kallenbach Neville R NR   Lu Min M  

Protein science : a publication of the Protein Society 20061222 2


The hydrophobic core of the GCN4 leucine-zipper dimerization domain is formed by a parallel helical association between nonpolar side chains at the a and d positions of the heptad repeat. Here we report a self-assembling coiled-coil array formed by the GCN4-pAe peptide that differs from the wild-type GCN4 leucine zipper by alanine substitutions at three charged e positions. GCN4-pAe is incompletely folded in normal solution conditions yet self-assembles into an antiparallel tetraplex in crystals  ...[more]

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