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Stabilization of conformationally dynamic helices by covalently attached acyl chains
Authors:Bernhard C Poschner  Dieter Langosch
Institution:1.Lehrstuhl Chemie der Biopolymere, Technische Universität München, 85354 Freising, Germany;2.Munich Center for Integrated Protein Science (CIPSM), 81377 Munich, Germany
Abstract:Acylation of proteins is known to mediate membrane attachment and to influence subcellular sorting. Here, we report that acylation can stabilize secondary structure. Circular dichroism spectroscopy showed that N‐terminal attachment of acyl chains decreases the ability of an intrinsically flexible hydrophobic model peptide to refold from an α‐helical state to β‐sheet in response to changing solvent conditions. Acylation also stabilized the membrane‐embedded α‐helix. This increase of global helix stability did not result from decreased local conformational dynamics of the helix backbone as assessed by deuterium/hydrogen‐exchange experiments. We concluded that acylation can stabilize the structure of intrinsically dynamic helices and may thus prevent misfolding.
Keywords:acylation  LV‐peptides  helix stability  hydrogen/deuterium‐exchange  circular dichroism spectroscopy
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