Stabilizing capping motif for β-hairpins and sheets

Although much has been learned about the design of models of β-sheets during the last decade, modest fold stabilities in water and terminal fraying remain a feature of most β-hairpin peptides. In the case of hairpin capping, nature did not provide guidance for solving the problem. Some observations...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2010-06, Vol.107 (23), p.10466-10471
Hauptverfasser: Kier, Brandon L, Shu, Irene, Eidenschink, Lisa A, Andersen, Niels H
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container_issue 23
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container_title Proceedings of the National Academy of Sciences - PNAS
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creator Kier, Brandon L
Shu, Irene
Eidenschink, Lisa A
Andersen, Niels H
description Although much has been learned about the design of models of β-sheets during the last decade, modest fold stabilities in water and terminal fraying remain a feature of most β-hairpin peptides. In the case of hairpin capping, nature did not provide guidance for solving the problem. Some observations from prior turn capping designs, with further optimization, have provided a generally applicable, "unnatural" beta cap motif (alkanoyl-Trp at the N terminus and Trp-Thr-Gly at the C terminus) that provides a net contribution of 6 + kJ/mol to β-hairpin stability, surpassing all other interactions that stabilize β-hairpins including the covalent disulfide bond. The motif, made up entirely of natural residues, is specific to the termini of antiparallel β-strands and reduces fraying at the ends of hairpins and other β-sheet models. Utilizing this motif, 10- to 22-residue peptide scaffolds of defined stereochemistry that are greater than 98% folded in water have been prepared. The β-cap can also be used to staple together short antiparallel β-strands connected by a long flexible loop.
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subjects Acetylation
Aggregation
Amides
Amino Acid Sequence
Biological Sciences
Chemical equilibrium
Circular Dichroism
Control loops
Couplets
Design optimization
Excitons
Models, Molecular
Nuclear Magnetic Resonance, Biomolecular
Protein Folding
Protein Stability
Protein Structure, Secondary
Proteins
Proteins - chemistry
Proteins - metabolism
Protons
Spectroscopy
title Stabilizing capping motif for β-hairpins and sheets
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