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TitleStructural plasticity of helical nanotubes based on coiled-coil assemblies.
Journal, issue, pagesStructure, Vol. 23, Issue 2, Page 280-289, Year 2015
Publish dateFeb 3, 2015
AuthorsE H Egelman / C Xu / F DiMaio / E Magnotti / C Modlin / X Yu / E Wright / D Baker / V P Conticello /
PubMed AbstractNumerous instances can be seen in evolution in which protein quaternary structures have diverged while the sequences of the building blocks have remained fairly conserved. However, the path through ...Numerous instances can be seen in evolution in which protein quaternary structures have diverged while the sequences of the building blocks have remained fairly conserved. However, the path through which such divergence has taken place is usually not known. We have designed two synthetic 29-residue α-helical peptides, based on the coiled-coil structural motif, that spontaneously self-assemble into helical nanotubes in vitro. Using electron cryomicroscopy with a newly available direct electron detection capability, we can achieve near-atomic resolution of these thin structures. We show how conservative changes of only one or two amino acids result in dramatic changes in quaternary structure, in which the assemblies can be switched between two very different forms. This system provides a framework for understanding how small sequence changes in evolution can translate into very large changes in supramolecular structure, a phenomenon that may have significant implications for the de novo design of synthetic peptide assemblies.
External linksStructure / PubMed:25620001 / PubMed Central
MethodsEM (helical sym.)
Resolution3.6 Å
Structure data

EMDB-6123: Helical nanotube formed from a 29-residue peptide
PDB-3j89: Structural Plasticity of Helical Nanotubes Based on Coiled-Coil Assemblies
Method: EM (helical sym.) / Resolution: 3.6 Å

Source
  • synthetic construct (others)
KeywordsSYNTHETIC PEPTIDE / coiled-coil / nanotube / helical filament

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