The challenge of predicting optical properties of biomolecules: What can we learn from time-dependent density-functional theory?

被引:23
作者
Castro, Alberto [2 ]
Marques, Miguel A. L. [3 ,4 ]
Varsano, Daniele [5 ]
Sottile, Francesco [6 ]
Rubio, Angel [1 ,7 ,8 ]
机构
[1] Univ Basque Country, Dept Fis Mat, San Sebastian 20018, Spain
[2] Free Univ Berlin, Fachbereich Phys, Inst Theoret Phys, D-14195 Berlin, Germany
[3] Univ Lyon 1, CNRS, Lab Phys Mat Condensee & Nanostruct, UMR5586, F-69622 Villeurbanne, France
[4] Univ Coimbra, Dept Phys, Ctr Computat Phys, P-3004516 Coimbra, Portugal
[5] Univ Modena, Dipartimento Fis, CNR, INFM,Natl Ctr NanoStruct & BioSyst Surface S3, I-41100 Modena, Italy
[6] Ecole Polytech, Solides Irradies Lab, F-91128 Palaiseau, France
[7] Univ Basque Country, EHU, Ctr Mixto, CSIC, San Sebastian 20018, Spain
[8] Univ Basque Country, DIPC, San Sebastian 20018, Spain
关键词
Biomolecules; Excitations; TDDFT; BLUE FLUORESCENT PROTEIN; SIZE-EXPANDED ANALOGS; MOLECULAR-DYNAMICS; EXCITED-STATES; ELECTRON LOCALIZATION; EXCITATION-ENERGIES; GENETIC HELIX; SCHIFF-BASES; PHOTOISOMERIZATION; APPROXIMATION;
D O I
10.1016/j.crhy.2008.09.001
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The suitability of the time-dependent density-functional theory (TDDFT) approach for the theoretical study of the optical properties of biomolecules is demonstrated by several examples. We critically discuss the limitations of available TDDFT implementations to address some of the present open questions in the description of the excited-state dynamics of biological complexes. The key objective of the present work is to address the performance of TDDFT in the linear response regime of the bio-molecular systems to the visible or near UV radiation - measured by, e.g. optical absorption or optical dichroism spectra. Although these spectra are essentially determined by the electronic degrees of freedom of small, optically active regions within the usually large biological systems, they can also be strongly influenced by environment effects (solvent, hosting protein, temperature, etc.). Moreover, many key biological processes consist of photo-induced dynamics (photoisomerisation, etc.), and their description requires a coupled treatment of electronic and nuclear degrees of freedom. We illustrate these aspects with a selection of paradigmatic biomolecular systems: chromophores in fluorescent proteins, porphyrins, DNA basis, the azobenzene dye, etc. To cite this article: A. Castro et al., C. R. Physique 10 (2009). (C) 2008 Published by Elsevier Masson SAS on behalf of Academie des sciences.
引用
收藏
页码:469 / 490
页数:22
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