학술논문

Design of a single-chain polypeptide tetrahedron assembled from coiled-coil segments.
Document Type
Article
Source
Nature Chemical Biology. Jun2013, Vol. 9 Issue 6, p362-366. 5p. 2 Diagrams, 2 Graphs.
Subject
*POLYPEPTIDES
*PROTEIN structure
*MOLECULAR self-assembly
*NANOSTRUCTURES
*TOPOLOGY
*FLUORESCENT proteins
Language
ISSN
1552-4450
Abstract
Protein structures evolved through a complex interplay of cooperative interactions, and it is still very challenging to design new protein folds de novo. Here we present a strategy to design self-assembling polypeptide nanostructured polyhedra based on modularization using orthogonal dimerizing segments. We designed and experimentally demonstrated the formation of the tetrahedron that self-assembles from a single polypeptide chain comprising 12 concatenated coiled coil-forming segments separated by flexible peptide hinges. The path of the polypeptide chain is guided by a defined order of segments that traverse each of the six edges of the tetrahedron exactly twice, forming coiled-coil dimers with their corresponding partners. The coincidence of the polypeptide termini in the same vertex is demonstrated by reconstituting a split fluorescent protein in the polypeptide with the correct tetrahedral topology. Polypeptides with a deleted or scrambled segment order fail to self-assemble correctly. This design platform provides a foundation for constructing new topological polypeptide folds based on the set of orthogonal interacting polypeptide segments. [ABSTRACT FROM AUTHOR]