| Literature DB >> 18222472 |
Fabio Parmeggiani1, Riccardo Pellarin, Anders Peter Larsen, Gautham Varadamsetty, Michael T Stumpp, Oliver Zerbe, Amedeo Caflisch, Andreas Plückthun.
Abstract
Armadillo repeat proteins are abundant eukaryotic proteins involved in several cellular processes, including signaling, transport, and cytoskeletal regulation. They are characterized by an armadillo domain, composed of tandem armadillo repeats of approximately 42 amino acids, which mediates interactions with peptides or parts of proteins in extended conformation. The conserved binding mode of the peptide in extended form, observed for different targets, makes armadillo repeat proteins attractive candidates for the generation of modular peptide-binding scaffolds. Taking advantage of the large number of repeat sequences available, a consensus-based approach combined with a force field-based optimization of the hydrophobic core was used to derive soluble, highly expressed, stable, monomeric designed proteins with improved characteristics compared to natural armadillo proteins. These sequences constitute the starting point for the generation of designed armadillo repeat protein libraries for the selection of peptide binders, exploiting their modular structure and their conserved binding mode.Mesh:
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Year: 2007 PMID: 18222472 DOI: 10.1016/j.jmb.2007.12.014
Source DB: PubMed Journal: J Mol Biol ISSN: 0022-2836 Impact factor: 5.469