Issue 54, 2019

Substituent effects on the stability of the four most stable tautomers of adenine and purine

Abstract

Substituent effects at the C2-, C8- and N-positions of adenine and purine in their four the most stable tautomers are studied by means of B97D3/aug-cc-pvdz computation applying substituents of varying electronic properties: NO2, CN, CHO, Cl, F, H, Me, OMe, OH and NH2. The substituent effect is characterized by the substituent effect stabilization energy (SESE) and substituent Hammett constant σ. For adenine, SESE is obtained with purine as the reference system. Additionally, for both adenine and purine, SESE characteristics are estimated with benzene, imidazole and amino-pyrimidine as reference systems, when possible, taking into account substitution in topologically equivalent positions. The role of a C6–NH2 group in adenine in modifying the substitution effect is observed and discussed. Additionally, the proximity effect for some asymmetric substituents (e.g. CHO, OMe) is recognized and meticulously analyzed.

Graphical abstract: Substituent effects on the stability of the four most stable tautomers of adenine and purine

Supplementary files

Article information

Article type
Paper
Submitted
19 Jun 2019
Accepted
20 Sep 2019
First published
02 Oct 2019
This article is Open Access
Creative Commons BY license

RSC Adv., 2019,9, 31343-31356

Substituent effects on the stability of the four most stable tautomers of adenine and purine

H. Szatylowicz, A. Jezuita, P. H. Marek and T. M. Krygowski, RSC Adv., 2019, 9, 31343 DOI: 10.1039/C9RA04615A

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