Cargando…

Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA

Inosine is an important RNA modification, furthermore RNA oxidation has gained interest due, in part, to its potential role in the development/progression of disease as well as on its impact on RNA structure and function. In this report we established the base pairing abilities of purine nucleobases...

Descripción completa

Detalles Bibliográficos
Autores principales: Skinner, Austin, Yang, Chou‐Hsun, Hincks, Kazuki, Wang, Haobin, Resendiz, Marino J. E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7780609/
https://www.ncbi.nlm.nih.gov/pubmed/33216981
http://dx.doi.org/10.1002/bip.23410
_version_ 1783631535496232960
author Skinner, Austin
Yang, Chou‐Hsun
Hincks, Kazuki
Wang, Haobin
Resendiz, Marino J. E.
author_facet Skinner, Austin
Yang, Chou‐Hsun
Hincks, Kazuki
Wang, Haobin
Resendiz, Marino J. E.
author_sort Skinner, Austin
collection PubMed
description Inosine is an important RNA modification, furthermore RNA oxidation has gained interest due, in part, to its potential role in the development/progression of disease as well as on its impact on RNA structure and function. In this report we established the base pairing abilities of purine nucleobases G, I, A, as well as their corresponding, 8‐oxo‐7,8‐dihydropurine (common products of oxidation at the C8‐position of purines), and 8‐bromopurine (as probes to explore conformational changes), derivatives, namely 8‐oxoG, 8‐oxoI, 8‐oxoA, 8‐BrG, and 8‐BrI. Dodecamers of RNA were obtained using standard phosphoramidite chemistry via solid‐phase synthesis, and used as models to establish the impact that each of these nucleobases have on the thermal stability of duplexes, when base pairing to canonical and noncanonical nucleobases. Thermal stabilities were obtained from thermal denaturation transition (T (m)) measurements, via circular dichroism (CD). The results were then rationalized using models of base pairs between two monomers, via density functional theory (DFT), that allowed us to better understand potential contributions from H‐bonding patterns arising from distinct conformations. Overall, some of the important results indicate that: (a) an anti‐I:syn‐A base pair provides thermal stability, due to the absence of the exocyclic amine; (b) 8‐oxoG base pairs like U, and does not induce destabilization within the duplex when compared to the pyrimidine ring; (c) a U:G wobble‐pair is only stabilized by G; and (d) 8‐oxoA displays an inherited base pairing promiscuity in this sequence context. Gaining a better understanding of how this oxidatively generated lesions potentially base pair with other nucleobases will be useful to predict various biological outcomes, as well as in the design of biomaterials and/or nucleotide derivatives with biological potential.
format Online
Article
Text
id pubmed-7780609
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher John Wiley & Sons, Inc.
record_format MEDLINE/PubMed
spelling pubmed-77806092021-01-04 Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA Skinner, Austin Yang, Chou‐Hsun Hincks, Kazuki Wang, Haobin Resendiz, Marino J. E. Biopolymers Full Papers Inosine is an important RNA modification, furthermore RNA oxidation has gained interest due, in part, to its potential role in the development/progression of disease as well as on its impact on RNA structure and function. In this report we established the base pairing abilities of purine nucleobases G, I, A, as well as their corresponding, 8‐oxo‐7,8‐dihydropurine (common products of oxidation at the C8‐position of purines), and 8‐bromopurine (as probes to explore conformational changes), derivatives, namely 8‐oxoG, 8‐oxoI, 8‐oxoA, 8‐BrG, and 8‐BrI. Dodecamers of RNA were obtained using standard phosphoramidite chemistry via solid‐phase synthesis, and used as models to establish the impact that each of these nucleobases have on the thermal stability of duplexes, when base pairing to canonical and noncanonical nucleobases. Thermal stabilities were obtained from thermal denaturation transition (T (m)) measurements, via circular dichroism (CD). The results were then rationalized using models of base pairs between two monomers, via density functional theory (DFT), that allowed us to better understand potential contributions from H‐bonding patterns arising from distinct conformations. Overall, some of the important results indicate that: (a) an anti‐I:syn‐A base pair provides thermal stability, due to the absence of the exocyclic amine; (b) 8‐oxoG base pairs like U, and does not induce destabilization within the duplex when compared to the pyrimidine ring; (c) a U:G wobble‐pair is only stabilized by G; and (d) 8‐oxoA displays an inherited base pairing promiscuity in this sequence context. Gaining a better understanding of how this oxidatively generated lesions potentially base pair with other nucleobases will be useful to predict various biological outcomes, as well as in the design of biomaterials and/or nucleotide derivatives with biological potential. John Wiley & Sons, Inc. 2020-11-20 2020-12 /pmc/articles/PMC7780609/ /pubmed/33216981 http://dx.doi.org/10.1002/bip.23410 Text en © 2020 The Authors. Biopolymers published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Skinner, Austin
Yang, Chou‐Hsun
Hincks, Kazuki
Wang, Haobin
Resendiz, Marino J. E.
Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title_full Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title_fullStr Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title_full_unstemmed Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title_short Experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within A‐form duplexes of RNA
title_sort experimental and theoretical rationalization for the base pairing abilities of inosine, guanosine, adenosine, and their corresponding 8‐oxo‐7,8‐dihydropurine, and 8‐bromopurine analogues within a‐form duplexes of rna
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7780609/
https://www.ncbi.nlm.nih.gov/pubmed/33216981
http://dx.doi.org/10.1002/bip.23410
work_keys_str_mv AT skinneraustin experimentalandtheoreticalrationalizationforthebasepairingabilitiesofinosineguanosineadenosineandtheircorresponding8oxo78dihydropurineand8bromopurineanalogueswithinaformduplexesofrna
AT yangchouhsun experimentalandtheoreticalrationalizationforthebasepairingabilitiesofinosineguanosineadenosineandtheircorresponding8oxo78dihydropurineand8bromopurineanalogueswithinaformduplexesofrna
AT hinckskazuki experimentalandtheoreticalrationalizationforthebasepairingabilitiesofinosineguanosineadenosineandtheircorresponding8oxo78dihydropurineand8bromopurineanalogueswithinaformduplexesofrna
AT wanghaobin experimentalandtheoreticalrationalizationforthebasepairingabilitiesofinosineguanosineadenosineandtheircorresponding8oxo78dihydropurineand8bromopurineanalogueswithinaformduplexesofrna
AT resendizmarinoje experimentalandtheoreticalrationalizationforthebasepairingabilitiesofinosineguanosineadenosineandtheircorresponding8oxo78dihydropurineand8bromopurineanalogueswithinaformduplexesofrna