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Updated: Dec 27, 2025

Atomic Scale Structural Studies of Macromolecular Assemblies by Solid-state Nuclear Magnetic Resonance Spectroscopy
Published on: September 17, 2017
Structures and NMR spectra of short amylose-lipid complexes. Insight using molecular dynamics and DFT quantum
Adrien Schahl1, Valérie Réat2, Franck Jolibois3
1LPCNO, Université Fédérale De Toulouse Midi-Pyrénées, INSA-CNRS-UPS, 135 Avenue De Rangueil, 31077 Cedex 4 Toulouse, France; Institut De Pharmacologie Et De Biologie Structurale, UMR 5089, CNRS - Université De Toulouse, UPS BP 64182, 205 Route De Narbonne, 31077, Toulouse, Cedex 04, France.
Abstract:
It is well established that amylose folds in a helix conformation in presence of lipids. Structural features of such molecular complexes are often analysed using 13C NMR spectroscopy. The large size of amylose used to make such analysis doesn't allow to unambiguously correlate structure of polymers and spectroscopic signals. We present structural analysis of small sized amyloses complexed to palmitic acid using classical molecular dynamics. 15 glucoses residues are necessary for the amylose to fold around the palmitic acid in a well-established helix conformation. Simulating 13C NMR spectra using quantum chemical DFT approach, we demonstrate that these spectra are affected by amylose size and specific intramolecular hydrogen bonds. By mean of theoretical NMR spectra of a 19-residues amylose, we precise the attribution of each characteristic resonances. One chemical shift that is usually attributed to a specific carbon may be related to the existence of different inter or intramolecular hydrogen bonds.
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