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Luminescence excitation spectra reveal low-lying excited states in stacked adenine bases.

作者信息

Kononov A I, Bukina M N

机构信息

Institute of Physics, Department of Molecular Biophysics, St. Petersburg State University, Ulyanovskaya 1198904 Petergoff, Russia.

出版信息

J Biomol Struct Dyn. 2002 Dec;20(3):465-71. doi: 10.1080/07391102.2002.10506865.

DOI:10.1080/07391102.2002.10506865
PMID:12437385
Abstract

Luminescence emission, polarization, and excitation spectra of polyadenylic acid (poly(A)) have been studied in room-temperature aqueous solution (pH 8). The temperature dependence of the luminescence of poly(A) at two different excitation wavelengths in the range 10-70 degrees C has also been studied and compared with that of adenosine 5'-monophosphate (AMP). It has been found that the luminescence excitation spectrum and the polarization curve of poly(A) solution reveal a low-intensity electronic transition at about 320 nm which is red-shifted by approximately 0.9 eV from the maximum of the absorption spectrum at 260 nm. A model of two luminescent stacked forms is suggested. The difference in the ground state levels of these two stacked forms obtained from the temperature dependencies of the emissions is insignificant ( approximately 1 kcal/mol). This means a lowering of the excited state of the stacked form with the 320 nm/420 nm absorption/emission bands by approximately 0.9 eV as compared to the main form with the 260 nm/400 nm absorption/emission bands. The low-lying excited states suggest the stronger electronic coupling of the bases in a certain stacked form. It is proposed that such clusters of the stacked bases could provide the wire-like conductivity in the short segments of DNA.

摘要

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