Tracking excited state decay mechanisms of pyrimidine nucleosides in real time

Author:

Borrego-Varillas RocíoORCID,Nenov ArturORCID,Kabaciński PiotrORCID,Conti Irene,Ganzer Lucia,Oriana Aurelio,Jaiswal Vishal KumarORCID,Delfino Ines,Weingart Oliver,Manzoni CristianORCID,Rivalta IvanORCID,Garavelli MarcoORCID,Cerullo GiulioORCID

Abstract

AbstractDNA owes its remarkable photostability to its building blocks—the nucleosides—that efficiently dissipate the energy acquired upon ultraviolet light absorption. The mechanism occurring on a sub-picosecond time scale has been a matter of intense debate. Here we combine sub-30-fs transient absorption spectroscopy experiments with broad spectral coverage and state-of-the-art mixed quantum-classical dynamics with spectral signal simulations to resolve the early steps of the deactivation mechanisms of uridine (Urd) and 5-methyluridine (5mUrd) in aqueous solution. We track the wave packet motion from the Franck-Condon region to the conical intersections (CIs) with the ground state and observe spectral signatures of excited-state vibrational modes. 5mUrd exhibits an order of magnitude longer lifetime with respect to Urd due to the solvent reorganization needed to facilitate bulky methyl group motions leading to the CI. This activates potentially lesion-inducing dynamics such as ring opening. Involvement of the 1nπ* state is found to be negligible.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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