Anisotropic NMR as a Crucial Tool for Differentiation of Epimers With High Conformational Flexibility
Abstract
ABSTRACT Identifying the correct structures of epimers is highly challenging due to the sometimes very subtle differences in their respective NMR signatures. In this context, the analysis of carbon residual chemical shift anisotropies ( 13 C‐RCSAs) and residual dipolar couplings (RDCs) was essential for distinguishing the relative configurations of two tetraprenyltoluquinol epimeric meroterpenoids at C3 ( 1a and 1b ). These compounds feature two remotely located stereoclusters and exhibit significant conformational flexibility. DP4‐based approaches (DP4+ or J ‐DP4) failed to differentiate these epimers. A geometric exploration strategy was developed to investigate the conformational diversity of 1a and 1b while accounting for their inherent flexibility. Then, refining the conformational space and optimizing the fitting of the anisotropic parameters of 1a / 1b measured in a 3 mm semi‐micro compression device using poly‐HEMA gels in DMSO enabled us to discriminate the relative configuration of them.
Article Details
Authors (7)
Juan Carlos C. Fuentes‐Monteverde
NMR Based Structural Biology MPI for Multidisciplinary Sciences Göttingen Germany
Abel M. Forero
Facultade de Ciencias CICA‐Centro Interdisciplinar de Química e Bioloxía e Departamento de Química Universidade Da Coruña A Coruña Spain
Nilamoni Nath
Department of Chemistry Gauhati University Guwahati India
Antonio Hernández Daranas
Instituto de Productos Naturales y Agrobiología, Consejo Superior de Investigaciones Cientificas (IPNA‐CSIC) San Cristobal de La Laguna Spain
Carlos Jiménez
Jaime Rodríguez
Christian Griesinger
Department of NMR-based Structural Biology