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1.
Org Biomol Chem ; 22(15): 3025-3034, 2024 04 17.
Article in English | MEDLINE | ID: mdl-38530278

ABSTRACT

Four dinucleotide analogs of thymidylyl(3'-5')thymidine (TpT) have been designed and synthesized with a view to increase the selectivity, with respect to CPD, of efficient UV-induced (6-4) photoproduct formation. The deoxyribose residues of these analogs have been modified to increase north and south conformer populations at 5'- and 3'-ends, respectively. Dinucleotides whose 5'-end north population exceeds ca. 60% and whose 3'-end population is almost completely south display a three-fold selective enhancement in (6-4) adduct production when exposed to UV radiation, compared to TpT. These experimental results undoubtedly provide robust foundations for studying the singular ground-state proreactive species involved in the (6-4) photoproduct formation mechanism.


Subject(s)
Carbohydrates , Sugars , Photochemistry , Carbohydrates/chemistry , Dinucleoside Phosphates/chemistry , Ultraviolet Rays
2.
Org Biomol Chem ; 20(11): 2300-2307, 2022 03 16.
Article in English | MEDLINE | ID: mdl-35253821

ABSTRACT

Some amount of furanose in a southern conformation, possibly in both, but certainly in one of the two adjacent nucleotides of a dipyrimidine site, is necessary for (6-4) photoproduct formation in oligonucleotides. To explore the necessity, role, and most favorable location of each South sugar conformer in the formation of the (6-4) adduct in the thymine dinucleotide TpT, the photochemical behavior of two synthetic analogues, in which the South sugar conformation is prohibited for one of their two sugars, has been examined. Herein, we experimentally demonstrate that the presence of one sugar presenting some amount of South puckering, at any of the extremities, is sufficient to trigger (6-4) adduct formation. Nonetheless, the photochemical behavior of the dinucleotide with a South-puckered conformation at the 5'-end, mimics more closely that of TpT. In addition, using the 5' North 3' South-dilocked dinucleotide, we demonstrate that the flexibility of the South pucker at the 3'-end has little influence on the (6-4) adduct formation.


Subject(s)
Thymine , Carbohydrate Conformation
3.
Chem Commun (Camb) ; 55(83): 12571-12574, 2019 Oct 15.
Article in English | MEDLINE | ID: mdl-31577282

ABSTRACT

We herein demonstrate the UV resistance of glycol nucleic acid (GNA) dinucleotides. This resistance sustains the hypothesis of GNA as a nucleic acid prebiotic ancestor on early Earth, a time of intense solar UV light. Such photorobustness, due to the absence of intrastrand base stacking, could offer an opportunity for nanodevice development requiring challenging UV conditions.


Subject(s)
Nucleotides/chemistry , Nucleotides/radiation effects , Thymine/analogs & derivatives , Ultraviolet Rays , Nucleic Acid Conformation/radiation effects , Thymine/chemistry
4.
J Org Chem ; 80(1): 615-9, 2015 Jan 02.
Article in English | MEDLINE | ID: mdl-25496131

ABSTRACT

The di-2'-α-fluoro analogue of thymidylyl(3',5')thymidine, synthesized to probe the effect of a minimum amount of S conformer on the photoreactivity of dinucleotides, is endowed with only 3% and 8% of S sugar conformation at its 5'- and 3'-end, respectively. This analogue gives rise to the (6-4) photoproduct as efficiently as the dithymine dinucleotide (74% and 66% at the 5'- and 3'-end, respectively) under 254 nm. Our results suggest that the 5'-N, 3'-S conformer gives rise to the (6-4) photoproduct.


Subject(s)
Carbohydrates/chemistry , Dinucleoside Phosphates/chemical synthesis , Dinucleoside Phosphates/chemistry , Molecular Conformation , Photochemical Processes
6.
J Am Chem Soc ; 132(30): 10260-1, 2010 Aug 04.
Article in English | MEDLINE | ID: mdl-20662506

ABSTRACT

Hydrolysis of TA photoproduct leads to two derivatives presenting different formation kinetic profiles depending on the oligomer content. The formation efficiency of TA photoproducts in UV-C-irradiated DNA slightly exceeds the formation of the trans,syn cyclobutane pyrimidine dimer at TT sites.


Subject(s)
DNA/chemistry , Pyrimidine Dimers/chemistry , Hydrolysis , Photochemical Processes , Ultraviolet Rays
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