Artículo
Exploring the Mechanisms behind Non-aromatic Fluorescence with the Density Functional Tight Binding Method
Díaz Mirón, Gonzalo
; Lien Medrano, Carlos R.; Banerjee, Debarshi; Morzan, Uriel
; Sentef, Michael A.; Gebauer, Ralph; Hassanali, Ali
; Lien Medrano, Carlos R.; Banerjee, Debarshi; Morzan, Uriel
; Sentef, Michael A.; Gebauer, Ralph; Hassanali, Ali
Fecha de publicación:
04/2024
Editorial:
American Chemical Society
Revista:
Journal of Chemical Theory and Computation
ISSN:
1549-9618
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
Recent experimental findings reveal non-conventional fluorescence emission in biological systems devoid of conjugated bonds or aromatic compounds, termed NonAromatic Fluorescence (NAF). This phenomenon is exclusive to aggregated or solid states, remaining absent in monomeric solutions. Previous studies focused on small model systems in vacuum show that the carbonyl stretching mode along with strong interaction of short hydrogen bonds (SHBs) remain the primary vibrational mode explaining NAF in these systems. In order to simulate larger model systems taking into account the effects of the surrounding environment, in this work we propose using the density functional tight-binding (DFTB) method in combination with non-adiabatic molecular dynamics (NAMD) and the mixed quantum/molecular mechanics (QM/MM) approach. We investigate the mechanism behind NAF in the crystal structure of Lpyroglutamine-ammonium, comparing it with the related non-fluorescent amino acid L-glutamine. Our results extend our previous findings to more realistic systems, demonstrating the efficiency and robustness of the proposed DFTB method in the context of NAMD in biological systems. Furthemore, due to its inherent low computational cost, this method allows for a better sampling on the non-radiative events at the conical intersection which is crucial for a complete understanding of this phenomenon. Beyond contributing to the ongoing exploration of NAF, this work paves the way for future application of this method in more complex biological systems such as amyloid aggregates, biomaterials and non-aromatic proteins.
Palabras clave:
Time dependent density functional theory
,
Fluorescence
,
Oligomers
,
QMMM
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Articulos(IFIBA)
Articulos de INST.DE FISICA DE BUENOS AIRES
Articulos de INST.DE FISICA DE BUENOS AIRES
Citación
Díaz Mirón, Gonzalo; Lien Medrano, Carlos R.; Banerjee, Debarshi; Morzan, Uriel; Sentef, Michael A.; et al.; Exploring the Mechanisms behind Non-aromatic Fluorescence with the Density Functional Tight Binding Method; American Chemical Society; Journal of Chemical Theory and Computation; 20; 9; 4-2024; 3864-3878
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