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Dodecylphosphocholine micelles as a membrane-like environment: new results from NMR relaxation and paramagnetic relaxation enhancement analysis
Authors:Veronica Beswick  Raphaël Guerois  Françoise Cordier-Ochsenbein  Yves-Marie Coïc  Tam Huynh-Dinh  Jean Tostain  Jean-Pierre Noël  Alain Sanson  J.-M. Neumann
Affiliation:(1) Département de Biologie Cellulaire et Moléculaire, Section de Biophysique des Protéines et des Membranes, URA CNRS 2096, CEA Saclay, F-91191 Gif sur Yvette Cedex, France, FR;(2) Unité de Chimie Organique, URA CNRS 487, Institut Pasteur, 28 Rue du Dr. Roux, F-75724 Paris Cedex 15, France, FR;(3) Service des Molécules Marquées, CEA Saclay, F-91191 Gif sur Yvette Cedex, France, FR;(4) Université P. et M. Curie, 9 Quai Saint-Bernard, Bat. C, F-75005 Paris, France, FR
Abstract:To further examine to what extent a dodecylphosphocholine (DPC) micelle mimics a phosphatidylcholine bilayer environment, we performed 13C, 2H, and 31P NMR relaxation measurements. Our data show that the dynamic behavior of DPC phosphocholine groups at low temperature (12 °C) corresponds to that of a phosphatidylcholine interface at high temperature (51 °C). In the presence of helical peptides, a PMP1 fragment, or an annexin fragment, the DPC local dynamics are not affected whereas the DPC aggregation number is increased to match an appropriate area/volume ratio for accommodating the bound peptides. We also show that quantitative measurements of paramagnetic relaxation enhancements induced by small amounts of spin-labeled phospholipids on peptide proton signals provide a meaningful insight on the location of both PMP1 and annexin fragments in DPC micelles. The paramagnetic contributions to the relaxation were extracted from intra-residue cross-peaks of NOESY spectra for both peptides. The location of each peptide in the micelles was found consistent with the corresponding relaxation data. As illustrated by the study of the PMP1 fragment, paramagnetic relaxation data also allow us to supply the missing medium-range NOEs and therefore to complete a standard conformational analysis of peptides in micelles. Received: 16 April 1998 / Revised version: 19 June 1998 / Accepted: 30 July 1998
Keywords:Dodecylphosphocholine  Peptide-lipid interaction  Paramagnetic probe  NMR
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