Cargando…

Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics

Bistrand lesions embedded within a single helical turn of tridecameric deoxyoligonucleotide duplexes represent a model system for exploring the impact of clustered lesions that occur in vivo and pose a significant challenge to cellular repair machineries. Such investigations are essential for unders...

Descripción completa

Detalles Bibliográficos
Autores principales: Minetti, Conceição A., Sun, Jeffrey Y., Jacobs, Daniel P., Kang, Inkoo, Remeta, David P., Breslauer, Kenneth J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6175389/
https://www.ncbi.nlm.nih.gov/pubmed/29322505
http://dx.doi.org/10.1002/bip.23098
_version_ 1783361499015675904
author Minetti, Conceição A.
Sun, Jeffrey Y.
Jacobs, Daniel P.
Kang, Inkoo
Remeta, David P.
Breslauer, Kenneth J.
author_facet Minetti, Conceição A.
Sun, Jeffrey Y.
Jacobs, Daniel P.
Kang, Inkoo
Remeta, David P.
Breslauer, Kenneth J.
author_sort Minetti, Conceição A.
collection PubMed
description Bistrand lesions embedded within a single helical turn of tridecameric deoxyoligonucleotide duplexes represent a model system for exploring the impact of clustered lesions that occur in vivo and pose a significant challenge to cellular repair machineries. Such investigations are essential for understanding the forces that dictate lesion‐induced mutagenesis, carcinogenesis, and cytotoxicity within a context that mimics local helical perturbations caused by an ionizing radiation event. This study characterizes the structural and energy profiles of DNA duplexes harboring synthetic abasic sites (tetrahydrofuran, F) as models of clustered bistrand abasic (AP) lesions. The standard tridecameric dGCGTACCCATGCG·dCGCATGGGTACGC duplex is employed to investigate the energetic impact of single and bistrand AP sites by strategically replacing one or two bases within the central CCC/GGG triplet. Our combined analysis of temperature‐dependent UV and circular dichroism (CD) profiles reveals that the proximity and relative orientation of AP sites within bistrand‐damaged duplexes imparts a significant thermodynamic impact. Specifically, 3′‐staggered lesions (CCF/GFG) exert a greater destabilizing effect when compared with their 5′‐counterpart (FCC/GFG). Moreover, a duplex harboring the central bistrand AP lesion (CFC/GFG) is moderately destabilized yet exhibits distinct properties relative to both the 3′ and 5′‐orientations. Collectively, our energetic data are consistent with structural studies on bistrand AP‐duplexes of similar sequence in which a 3′‐staggered lesion exerts the greatest perturbation, a finding that provides significant insight regarding the impact of orientation on lesion repair processing efficiency.
format Online
Article
Text
id pubmed-6175389
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-61753892018-10-19 Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics Minetti, Conceição A. Sun, Jeffrey Y. Jacobs, Daniel P. Kang, Inkoo Remeta, David P. Breslauer, Kenneth J. Biopolymers Original Articles Bistrand lesions embedded within a single helical turn of tridecameric deoxyoligonucleotide duplexes represent a model system for exploring the impact of clustered lesions that occur in vivo and pose a significant challenge to cellular repair machineries. Such investigations are essential for understanding the forces that dictate lesion‐induced mutagenesis, carcinogenesis, and cytotoxicity within a context that mimics local helical perturbations caused by an ionizing radiation event. This study characterizes the structural and energy profiles of DNA duplexes harboring synthetic abasic sites (tetrahydrofuran, F) as models of clustered bistrand abasic (AP) lesions. The standard tridecameric dGCGTACCCATGCG·dCGCATGGGTACGC duplex is employed to investigate the energetic impact of single and bistrand AP sites by strategically replacing one or two bases within the central CCC/GGG triplet. Our combined analysis of temperature‐dependent UV and circular dichroism (CD) profiles reveals that the proximity and relative orientation of AP sites within bistrand‐damaged duplexes imparts a significant thermodynamic impact. Specifically, 3′‐staggered lesions (CCF/GFG) exert a greater destabilizing effect when compared with their 5′‐counterpart (FCC/GFG). Moreover, a duplex harboring the central bistrand AP lesion (CFC/GFG) is moderately destabilized yet exhibits distinct properties relative to both the 3′ and 5′‐orientations. Collectively, our energetic data are consistent with structural studies on bistrand AP‐duplexes of similar sequence in which a 3′‐staggered lesion exerts the greatest perturbation, a finding that provides significant insight regarding the impact of orientation on lesion repair processing efficiency. John Wiley and Sons Inc. 2018-01-11 2018-08 /pmc/articles/PMC6175389/ /pubmed/29322505 http://dx.doi.org/10.1002/bip.23098 Text en © 2018 The Authors Biopolymers Published by Wiley Periodicals, Inc. 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 Original Articles
Minetti, Conceição A.
Sun, Jeffrey Y.
Jacobs, Daniel P.
Kang, Inkoo
Remeta, David P.
Breslauer, Kenneth J.
Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title_full Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title_fullStr Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title_full_unstemmed Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title_short Impact of bistrand abasic sites and proximate orientation on DNA global structure and duplex energetics
title_sort impact of bistrand abasic sites and proximate orientation on dna global structure and duplex energetics
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6175389/
https://www.ncbi.nlm.nih.gov/pubmed/29322505
http://dx.doi.org/10.1002/bip.23098
work_keys_str_mv AT minetticonceicaoa impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics
AT sunjeffreyy impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics
AT jacobsdanielp impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics
AT kanginkoo impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics
AT remetadavidp impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics
AT breslauerkennethj impactofbistrandabasicsitesandproximateorientationondnaglobalstructureandduplexenergetics