Chiral recognition of Dansyl Derivatives with an amino acid-based molecular micelle: A Molecular dynamics investigation

Date

2021-05-26

Authors

Billiot, Fereshteh
Garcia, Mauro
Black, Nathan
Billiot, Eugene
Morris, Kevin F.
Fang, Yayin

ORCID

Journal Title

Journal ISSN

Volume Title

Publisher

Scientific Research Publishing

Abstract

In this study, the chiral separation mechanisms of Dansyl amino acids, including Dansyl-Leucine (Dans-Leu), Dansyl-Norleucine (Dans-Nor), Dansyl-Tryptophan (Dans-Trp) and Dansyl-Phenylalanine (Dans-Phe) binding to poly-sodium N-undecanoyl-(L)-Leucylvalinate, poly (SULV), were investigated using molecular dynamics simulations. Micellar electrokinetic chromatography (MEKC) has previously shown that when separating the enantiomers of these aforementioned Dansyl amino acids, the L-enantiomers bind stronger to poly (SULV) than the D-enantiomers. This study aims to investigate the molecular interactions that govern chiral recognition in these systems using computational methods. This study reveals that the computationally- calculated binding free energy values for Dansyl enantiomers binding to poly (SULV) are in agreement with the enantiomeric order produced in experimental MEKC studies. The L-enantiomers of Dans-Leu, Dans-Nor, Dans-Trp, and Dans-Phe binding to their preferred binding pockets in poly (SULV) yielded binding free energy values of −21.8938, −22.1763, −21.3329 and −13.3349 kJ∙mol−1, respectively. The D-enantiomers of Dans-Leu, Dans-Nor, Dans-Trp, and Dans-Phe binding to their preferred binding pockets in poly (SULV) yielded binding free energy values of −14.5811, −15.9457, −13.6408, and −12.0959 kJ∙mol−1, respectively. Furthermore, hydrogen bonding analyses were used to investigate and elucidate the molecular interactions that govern chiral recognition in these molecular systems.

Description

Keywords

amino acid based molecular micelles, molecular modeling, computational chemistry, chiral recognition

Sponsorship

Rights:

Attribution 4.0 International

Citation

Garcia, M., Black, N., Billiot, E., Billiot, F., Morris, K.F. and Fang, Y.Y. (2021) Chiral Recognition of Dansyl Derivatives with an Amino Acid- Based Molecular Micelle: A Molecular Dynamics Investigation. Open Journal of Physical Chemistry, 11, 64-86. https://doi.org/10.4236/ojpc.2021.112004