A fluorescence study of N1-(?-D-glucopyranosyl)-N4-[2-acridin-9(10H)-onyl]-cytosine (GLAC), the first fluorescent potent inhibitor of Glycogen Phosphorylase (GP), in neutral aqueous solution, is presented herein. Quantum chemistry (TD-DFT) calculations show the existence of several conformers both in the ground and first excited state. They result from rotation of the acridone and cytosine moieties around an NH bridge which may lead to the formation of non-emitting charge transfer states. The fingerprint of various conformers have been detected by time-resolved fluorescence spectroscopy (fluorescence upconversion and time-correlated single photon counting) and identified using as criteria their energy, polarization and relative population resulting from computations. Such an analysis should contribute to the design of new GP inhibitors with better fluorescence properties, suitable for imaging applications.

Multiscale time-resolved fluorescence study of a glycogen phosphorylase inhibitor combined with quantum chemistry calculations

Filippo Monti;Alessandro Venturini
2019

Abstract

A fluorescence study of N1-(?-D-glucopyranosyl)-N4-[2-acridin-9(10H)-onyl]-cytosine (GLAC), the first fluorescent potent inhibitor of Glycogen Phosphorylase (GP), in neutral aqueous solution, is presented herein. Quantum chemistry (TD-DFT) calculations show the existence of several conformers both in the ground and first excited state. They result from rotation of the acridone and cytosine moieties around an NH bridge which may lead to the formation of non-emitting charge transfer states. The fingerprint of various conformers have been detected by time-resolved fluorescence spectroscopy (fluorescence upconversion and time-correlated single photon counting) and identified using as criteria their energy, polarization and relative population resulting from computations. Such an analysis should contribute to the design of new GP inhibitors with better fluorescence properties, suitable for imaging applications.
2019
Istituto per la Sintesi Organica e la Fotoreattivita' - ISOF
Inglese
21
7685
7696
12
https://pubs.rsc.org/en/content/articlelanding/2019/CP/C8CP07538G
Sì, ma tipo non specificato
Inhibitor
DFT
Multiscale fluorescence
This work was supported by Heracleitus II (awarded to M. M), LASERLAB-EUROPE (FP7 No. 284464) and ''Progetto Bandiera'' N-CHEM (to A. V). K. M. acknowledges funding from the Hellenic National Scholarships Foundation through a ''Strengthening of Human Resources through Doctoral Research'' program, co-financed by the European Union (European Social Fund ESF) and Greek national funds through the Operational Program ''Human Resource Development, Education and Lifelong Learning'' 2014-2020.
2
info:eu-repo/semantics/article
262
Valentin Maffeis; Konstantinos Mavreas; Filippo Monti; Michael Mamais; Thomas Gustavsson; Evangelia D. Chrysina; Dimitra Markovitsi; Thanasis Gimisis;...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
none
   The Integrated Initiative of European Laser Research Infrastructures
   LASERLAB-EUROPE
   H2020
   654148
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/352332
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