Inter and Intrastrand Vibrational Coupling in DNA Studied with Heterodyned 2D-IR Spectroscopy

Heterodyned 2D-IR, frequency resolved photon echo, and pump−probe spectroscopies were collected to study the couplings and anharmonicities of cytidine and guanosine bases in DNA. Cytidine and guanosine anharmonicities were measured to be 9 and 14 cm-1, respectively. Strong cross-peaks were observed...

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Veröffentlicht in:The journal of physical chemistry. B 2003-09, Vol.107 (35), p.9165-9169
Hauptverfasser: Krummel, Amber T, Mukherjee, Prabuddha, Zanni, Martin T
Format: Artikel
Sprache:eng
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Zusammenfassung:Heterodyned 2D-IR, frequency resolved photon echo, and pump−probe spectroscopies were collected to study the couplings and anharmonicities of cytidine and guanosine bases in DNA. Cytidine and guanosine anharmonicities were measured to be 9 and 14 cm-1, respectively. Strong cross-peaks were observed between the guanosine (G) and cytosine (C) carbonyl stretches in the 2D-IR spectra of the self-complementary oligonucleotide dG5C5 (5‘-GGGGGCCCCC-3‘). The spectra are interpreted in terms of inter- and intrastrand couplings between the carbonyl modes, and an excitonic Hamiltonian, based on transition dipole coupling, was used to fit the 2D-IR spectra. The accuracy of this model is discussed in light of observed couplings to the ring modes.
ISSN:1520-6106
1520-5207
DOI:10.1021/jp035473h