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Journal ArticleDOI

Structure and dynamics of H2O vis-á-vis phenylalanine recognition at a DPPC lipid membrane via interfacial H-bond types: insights from polarized FT-IRRAS and ADMP simulations.

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TLDR
In spite of the challenging computational realm of this multiscale problem, the ADMP simulated molecular interactions complying with polarized vibrational spectroscopy unraveled a novel route to chiral recognition and interfacial water structure.
Abstract
Preferential and enantioselective interactions of l-/d-Phenylalanine (l-Phe and d-Phe) and butoxycarbonyl-protected l-/d-Phenylalanine (LPA and DPA) as guest with 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (l-DPPC) as host were tapped by using real time Fourier transform infrared reflection absorption spectroscopy (FT-IRRAS). Polarization-modulated FT-IRRAS of DPPC monolayers above the phenylalanine modified subphases depicted fine structure/conformation differences under considerations of controlled 2D surface pressure. Selective molecular recognition of d-enantiomer over l-enantiomer driven by the DPPC head group via H-bonding and electrostatic interactions was evident spectroscopically. Accordingly, binding constants (K) of 145, 346, 28, and 56 M−1 for LPA, DPA, l-Phe, and d-Phe, respectively, were estimated. The real time FT-IRRAS water bands were strictly conformation sensitive. The effect of micro-solvation on the structure and stability of the 1:1 diastereomeric l-lipid⋯, LPA/DPA and l-lipid⋯, (l/d)-Phe adducts was investigated with the aid of Atom-centered Density Matrix Propagation (ADMP), a first principle quantum mechanical molecular dynamics approach. The phosphodiester fragment was the primary site of hydration where specific solvent interactions were simulated through single- and triple- “water-phosphate” interactions, as water cluster’s “tetrahedral dice” to a “trimeric motif” transformation as a partial de-clusterization was evident. Under all the hydration patterns considered in both static and dynamic descriptions of density functional theory, l-lipid/d-amino acid enantiomer adducts continued to be stable structures while in dynamic systems, water rearranged without getting “squeezed-out” in the process of recognition. In spite of the challenging computational realm of this multiscale problem, the ADMP simulated molecular interactions complying with polarized vibrational spectroscopy unraveled a novel route to chiral recognition and interfacial water structure.

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Citations
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Journal ArticleDOI

Arginine–Phosphate Recognition Enhanced in Phospholipid Monolayers at Aqueous Interfaces

TL;DR: A model system of phosphate binding to an amino acid, arginine, and utilizes the interfacial properties of the phospholipid monolayer, 1,2-dipalmitoyl-sn-glycero-3-phosphatidic acid, as the phosphate source to quantify binding, allowing for the evaluation of its guanidinium moiety for phosphate chelation.
Journal ArticleDOI

Permeation of the three aromatic dipeptides through lipid bilayers: Experimental and computational study.

TL;DR: This study provides an improved microscopic understanding of passive peptide permeation through membranes, especially on the sensitivity of rotational diffusion to position relative to the bilayer.
Journal ArticleDOI

Computational molecular perspectives on the interaction of propranolol with β-cyclodextrin in solution: Towards the drug-receptor mechanism of interaction

TL;DR: In this paper, the authors examined and compared the performances of selected computational approaches for studying such supramolecular interaction, emphasizing the importance of the contribution of dispersion forces and hydrogen bonding in the mechanism of interaction.
Journal ArticleDOI

Chirality-Dependent Adsorption between Amphipathic Peptide and POPC Membrane.

TL;DR: A molecular understanding of the mechanism of the chirality-dependent peptide–membrane interactions is given, and clues to designing systems which are sensitive to theChirality of membranes are provided.
Book ChapterDOI

Hydrogen Bond Directed 2D Materials at Modulated Interfaces

TL;DR: In this paper, a 2D orientation-specific molecular ellipsoids conceived from a single component benzoic acid-based amphiphile is presented, drawing attention to rules centering around monomer structure, intra and intermolecular twists and the only 2D degree of freedom, the surface pressure, directing shape anisotropy during dynamic self-assembly.
References
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Journal ArticleDOI

The M06 suite of density functionals for main group thermochemistry, thermochemical kinetics, noncovalent interactions, excited states, and transition elements: two new functionals and systematic testing of four M06-class functionals and 12 other functionals

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Journal ArticleDOI

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Journal ArticleDOI

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