Alain Burger
University of Nice Sophia Antipolis
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Nucleic Acids Research | 2005
Nouha Ben Gaied; Nicole Glasser; Nick Ramalanjaona; Hervé Beltz; Philippe Wolff; Roland Marquet; Alain Burger; Yves Mély
We report here the synthesis and the spectroscopic characterization of 8-vinyl-deoxyadenosine (8vdA), a new fluorescent analog of deoxyadenosine. 8vdA was found to absorb and emit in the same wavelength range as 2′-deoxyribosyl-2-aminopurine (2AP), the most frequently used fluorescent nucleoside analog. Though the quantum yield of 8vdA is similar to that of 2AP, its molar absorption coefficient is about twice, enabling a more sensitive detection. Moreover, the fluorescence of 8vdA was found to be sensitive to temperature and solvent but not to pH (around neutrality) or coupling to phosphate groups. Though 8vdA is base sensitive and susceptible to depurination, the corresponding phosphoramidite was successfully prepared and incorporated in oligonucleotides of the type d(CGT TTT XNX TTT TGC) where N = 8vdA and X = A, T or C. The 8vdA-labeled oligonucleotides gave more stable duplexes than the corresponding 2AP-labeled sequences when X = A or T, indicating that 8vdA is less perturbing than 2AP and probably adopts an anti conformation to preserve the Watson–Crick H-bonding. In addition, the quantum yield of 8vdA is significantly higher than 2AP in all tested oligonucleotides in both their single strand and duplex states. The steady-state and time-resolved fluorescence parameters of 8vdA and 2AP were found to depend similarly on the nature of their flanking residues and on base pairing, suggesting that their photophysics are governed by similar mechanisms. Taken together, our data suggest that 8vdA is a non perturbing nucleoside analog that may be used with improved sensitivity for the same applications as 2AP.
Journal of the American Chemical Society | 2012
Dmytro Dziuba; Viktoriia Postupalenko; Marie Spadafora; Andrey S. Klymchenko; Vincent Guérineau; Yves Mély; Rachid Benhida; Alain Burger
With the aim of developing a new tool to investigate DNA interactions, a nucleoside analogue incorporating a 3-hydroxychromone (3HC) fluorophore as a nucleobase mimic was synthesized and incorporated into oligonucleotide chains. In comparison with existing fluorescent nucleoside analogues, this dye features exceptional environmental sensitivity switching between two well-resolved fluorescence bands. In labeled DNA, this nucleoside analogue does not alter the duplex conformation and exhibits a high fluorescence quantum yield. This probe is up to 50-fold brighter than 2-aminopurine, the fluorescent nucleoside standard. Moreover, the dual emission is highly sensitive to the polarity of the environment; thus, a strong shielding effect of the flanking bases from water was observed. With this nucleoside, the effect of a viral chaperone protein on DNA base stacking was site-selectively monitored.
Physical Chemistry Chemical Physics | 2012
Cyril A. Kenfack; Andrey S. Klymchenko; Guy Duportail; Alain Burger; Yves Mély
The electronic transitions occurring in 4-(N,N-dimethylamino)-3-hydroxyflavone (DMAF) and 2-furanyl-3-hydroxychromone (FHC) were investigated using the TDDFT method in aprotic and protic solvents. The solvent effect was incorporated into the calculations via the PCM formalism. The H-bonding between solute and protic solvent was taken into account by considering a molecular complex between these molecules. To examine the effect of the H-bond on the ESIPT reaction, the absorption and emission wavelengths as well as the energies of the different states that intervene during these electronic transitions were calculated in acetonitrile, ethanol and methanol. The calculated positions of the absorption and emission wavelengths in various solvents were in excellent agreement with the experimental spectra, validating our approach. We found that in DMAF, the hydrogen bonding with protic solvents makes the ESIPT reaction energetically unfavourable, which explains the absence of the ESIPT tautomer emission in protic solvents. In contrast, the excited tautomer state of FHC remains energetically favourable in both aprotic and protic solvents. Comparing our calculations with the previously reported time-resolved fluorescence data, the ESIPT reaction of DMAF in aprotic solvents is reversible because the emitting states are energetically close, whereas in FHC, ESIPT is irreversible because the tautomer state is below the corresponding normal state. Therefore, the ESIPT reaction in DMAF is controlled by the relative energies of the excited states (thermodynamic control), while in FHC the ESIPT is controlled probably by the energetic barrier (kinetic control).
Journal of Biological Inorganic Chemistry | 2006
Chiu-Fou Tseng; Alain Burger; Gaëtan L. A. Mislin; Isabelle J. Schalk; Steve S.-F. Yu; Sunney I. Chan; Mohamed A. Abdallah
Pyochelin, its analog 3′′-nor-NH-pyochelin, and the related methyl hydroxamate, 2-(2′-hydroxyphenyl)-4,5-dihydrothiazol-4-carboxylic acid methoxymethyl amide, have been prepared together with their Fe(III) complexes. The solution stoichiometry and the coordination of the three Fe(III) complexes in methanol or buffered (pH∼2) 50:50 (v/v) methanol–water mixtures were determined using various spectroscopic methods: UV–vis absorption, X-ray absorption, extended X-ray absorption fine structure and electron paramagnetic resonance. All three systems showed both a 1:1 and 2:1 ligand–Fe(III) stoichiometry, but presented different coordination properties. Conditional formation constants (pH∼2) were determined for both the 1:1 and 2:1 complexes in all three systems. Computation of the coordination-conformational energies by semiempirical methods indicated that the coordination in the case of the 2:1 complexes of pyochelin–Fe(III) and 3′′-nor-NH-pyochelin–Fe(III) was asymmetrical, with one molecule of pyochelin (or 3′′-nor-NH-pyochelin) tetradentately coordinated (O1, N1, N2 and O3) to the Fe(III), and the second molecule bound bidentately (O1, N1 or N2, O3), to complete the octahedral geometry. In contrast, two molecules of the methyl hydroxamate each provided a set of tridentate ligand atoms in the formation of the 2:1 ligand–Fe(III) complex. These results are consistent with the role of pyochelin in the uptake of iron by the FptA receptor in the outer membrane of Pseudomonas aeruginosa and in several gram-negative bacteria.
Chemistry: A European Journal | 2014
Dmytro Dziuba; Iuliia A. Karpenko; Nicolas P. F. Barthes; Benoît Y. Michel; Andrey S. Klymchenko; Rachid Benhida; Alexander P. Demchenko; Yves Mély; Alain Burger
Fluorescent nucleoside analogues with strong and informative responses to their local environment are in urgent need for DNA research. In this work, the design, synthesis and investigation of a new solvatochromic ratiometric fluorophore compiled from 3-hydroxychromones (3HCs) and uracil fragments are reported. 3HC dyes are a class of multi-parametric, environment-sensitive fluorophores providing a ratiometric response due to the presence of two well-resolved bands in their emission spectra. The synthesized conjugate demonstrates not only the preservation but also the improvement of these properties. The absorption and fluorescence spectra are shifted to longer wavelengths together with an increase of brightness. Moreover, the two fluorescence bands are better resolved and provide ratiometric responses across a broader range of solvent polarities. To understand the photophysical properties of this new fluorophore, a series of model compounds were synthesized and comparatively investigated. The obtained data indicate that uracil and 3HC fragments of this derivative are coupled into an electronic conjugated system, which on excitation attains strong charge-transfer character. The developed fluorophore is a prospective label for nucleic acids. Abstract in Ukrainian: .
Tetrahedron | 1988
Alain Burger; Françoise Colobert; Charles Hetru; Bang Luu
Abstract Two series of acetylenic derivatives of cholesterol were synthesized from stigmasterol and pregnenolone. These compounds carry an acetylenic function at C-22 and were devised with the aim to inhibit the C-22 hydroxylation of ecdysone biosynthesis by a suicide-substrate mechanism. Two of these compounds ( 15a , 15f ) inhibit the synthesis of ecdysone in follicular cells under in vitro conditions. The inhibition is selective of the C-22 hydroxylase system.
PLOS ONE | 2014
Alexandra A. Kuznetsova; Nikita A. Kuznetsov; Yuri N. Vorobjev; Nicolas P. F. Barthes; Benoı̂t Y. Michel; Alain Burger; Olga S. Fedorova
Here, we report the study of a new multichannel DNA fluorescent base analogue 3-hydroxychromone (3HC) to evaluate its suitability as a fluorescent reporter probe of structural transitions during protein-DNA interactions and its comparison with the current commercially available 2-aminopurine (aPu), pyrrolocytosine (Cpy) and 1,3-diaza-2-oxophenoxazine (tCO). For this purpose, fluorescent base analogues were incorporated into DNA helix on the opposite or on the 5′-side of the damaged nucleoside 5,6-dihydrouridine (DHU), which is specifically recognized and removed by Endonuclease VIII. These fluorophores demonstrated different sensitivities to the DNA helix conformational changes. The highest sensitivity and the most detailed information about the conformational changes of DNA induced by protein binding and processing were obtained using the 3HC probe. The application of this new artificial fluorescent DNA base is a very useful tool for the studies of complex mechanisms of protein-DNA interactions. Using 3HC biosensor, the kinetic mechanism of Endonuclease VIII action was specified.
Tetrahedron | 1989
Alain Burger; Jean-Pierre Roussel; Charles Hetru; Jules A. Hoffmann; Bang Luu
Abstract A series of allenic derivatives of cholesterol was synthesized from pregnenolone. These compounds carry an allenic function at C-20 or C-22 and were devised with the aim to inhibit the C-22 hydroxylation of ecdysone biosynthesis by a suicide-substrate mechanism. The four compounds synthesized inhibit efficiently the synthesis of ecdysone in the prothoracic glands of Locusta .
Tetrahedron Letters | 1995
Pierre M.J Jung; Alain Burger; Jean-François Biellmann
Abstract In order to prepare new anti-retroviral nucleoside analogues, the effect of the group at C-5′ on the addition of lithium and cerium trimethylsilylacetylide on 3′-ketonucleosides (R 1 = H, R 1 = TBDMS) derived from adenosine and uridine was studied. The best results in respect of yield (56 to 81%) and diastereoselectivity (95:5 to >98:2) were obtained with a cerium reagent (RCeCl 2 ).
Pesticide Biochemistry and Physiology | 1987
Alain Burger; J.P. Roussel; Françoise Colobert; C. Kappler; Charles Hetru; Bang Luu; Jules A. Hoffmann
Abstract We have recently synthesized a series of cholesterol derivatives with an acetylenic function on the side chain at C-22 (A. Burger, C. Hetru, F. Colobert, and B. Luu, submitted for publication). These molecules were devised as potential inhibitors (suicide substrates) of the hydroxylation at C-22 which is an obligate step in the biosynthesis of ecdysone, the molting hormone of insects. We have evaluated the inhibitory activity of these molecules in an in vitro assay using prothoracic glands of larvae of Locusta , which normally synthesize large amounts of ecdysone. Two out of twelve compounds which were tested showed a marked depressory effect (up to 60% at 10 −4 M ) which was dose dependent. This effect was irreversible. Concomitant addition of each of these inhibitors and tritiated ecdysone precursors with prothoracic glands indicate that one of these compounds selectively blocks the C-22 hydroxylase system.