Nmr-based configurational assignments of natural products: Gibbs sampling and bayesian inference using floating chirality distance geometry calculations

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Abstract

Floating chirality restrained distance geometry (fc-rDG) calculations are used to directly evolve structures from NMR data such as NOE-derived intramolecular distances or anisotropic residual dipolar couplings (RDCs). In contrast to evaluating pre-calculated structures against NMR restraints, multiple configurations (diastereomers) and conformations are generated automatically within the experimental limits. In this report, we show that the “unphysical” rDG pseudo energies defined from NMR violations bear statistical significance, which allows assigning probabilities to configurational assignments made that are fully compatible with the method of Bayesian inference. These “diastereomeric differentiabilities” then even become almost independent of the actual values of the force constants used to model the restraints originating from NOE or RDC data.

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Immel, S., Köck, M., & Reggelin, M. (2022). Nmr-based configurational assignments of natural products: Gibbs sampling and bayesian inference using floating chirality distance geometry calculations. Marine Drugs, 20(1). https://doi.org/10.3390/md20010014

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