Cargando…

Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene

G-quadruplexes embedded within promoters play a crucial role in regulating the gene expression. KIT is a widely studied oncogene, whose promoter contains three G-quadruplex forming sequences, c-kit1, c-kit2 and c-kit*. For these sequences available studies cover ensemble and single-molecule analyses...

Descripción completa

Detalles Bibliográficos
Autores principales: Vesco, Guglielmo, Lamperti, Marco, Salerno, Domenico, Marrano, Claudia Adriana, Cassina, Valeria, Rigo, Riccardo, Buglione, Enrico, Bondani, Maria, Nicoletto, Giulia, Mantegazza, Francesco, Sissi, Claudia, Nardo, Luca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464035/
https://www.ncbi.nlm.nih.gov/pubmed/34478543
http://dx.doi.org/10.1093/nar/gkab674
_version_ 1784572531314786304
author Vesco, Guglielmo
Lamperti, Marco
Salerno, Domenico
Marrano, Claudia Adriana
Cassina, Valeria
Rigo, Riccardo
Buglione, Enrico
Bondani, Maria
Nicoletto, Giulia
Mantegazza, Francesco
Sissi, Claudia
Nardo, Luca
author_facet Vesco, Guglielmo
Lamperti, Marco
Salerno, Domenico
Marrano, Claudia Adriana
Cassina, Valeria
Rigo, Riccardo
Buglione, Enrico
Bondani, Maria
Nicoletto, Giulia
Mantegazza, Francesco
Sissi, Claudia
Nardo, Luca
author_sort Vesco, Guglielmo
collection PubMed
description G-quadruplexes embedded within promoters play a crucial role in regulating the gene expression. KIT is a widely studied oncogene, whose promoter contains three G-quadruplex forming sequences, c-kit1, c-kit2 and c-kit*. For these sequences available studies cover ensemble and single-molecule analyses, although for kit* the latter were limited to a study on a promoter domain comprising all of them. Recently, c-kit2 has been reported to fold according to a multi-step process involving folding intermediates. Here, by exploiting fluorescence resonance energy transfer, both in ensemble and at the single molecule level, we investigated the folding of expressly designed constructs in which, alike in the physiological context, either c-kit2 or c-kit* are flanked by double stranded DNA segments. To assess whether the presence of flanking ends at the borders of the G-quadruplex affects the folding, we studied under the same protocols oligonucleotides corresponding to the minimal G-quadruplex forming sequences. Data suggest that addition of flanking ends results in biasing both the final equilibrium state and the folding kinetics. A previously unconsidered aspect is thereby unravelled, which ought to be taken into account to achieve a deeper insight of the complex relationships underlying the fine tuning of the gene-regulatory properties of these fascinating DNA structures.
format Online
Article
Text
id pubmed-8464035
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-84640352021-09-27 Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene Vesco, Guglielmo Lamperti, Marco Salerno, Domenico Marrano, Claudia Adriana Cassina, Valeria Rigo, Riccardo Buglione, Enrico Bondani, Maria Nicoletto, Giulia Mantegazza, Francesco Sissi, Claudia Nardo, Luca Nucleic Acids Res Gene regulation, Chromatin and Epigenetics G-quadruplexes embedded within promoters play a crucial role in regulating the gene expression. KIT is a widely studied oncogene, whose promoter contains three G-quadruplex forming sequences, c-kit1, c-kit2 and c-kit*. For these sequences available studies cover ensemble and single-molecule analyses, although for kit* the latter were limited to a study on a promoter domain comprising all of them. Recently, c-kit2 has been reported to fold according to a multi-step process involving folding intermediates. Here, by exploiting fluorescence resonance energy transfer, both in ensemble and at the single molecule level, we investigated the folding of expressly designed constructs in which, alike in the physiological context, either c-kit2 or c-kit* are flanked by double stranded DNA segments. To assess whether the presence of flanking ends at the borders of the G-quadruplex affects the folding, we studied under the same protocols oligonucleotides corresponding to the minimal G-quadruplex forming sequences. Data suggest that addition of flanking ends results in biasing both the final equilibrium state and the folding kinetics. A previously unconsidered aspect is thereby unravelled, which ought to be taken into account to achieve a deeper insight of the complex relationships underlying the fine tuning of the gene-regulatory properties of these fascinating DNA structures. Oxford University Press 2021-09-03 /pmc/articles/PMC8464035/ /pubmed/34478543 http://dx.doi.org/10.1093/nar/gkab674 Text en © The Author(s) 2021. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Vesco, Guglielmo
Lamperti, Marco
Salerno, Domenico
Marrano, Claudia Adriana
Cassina, Valeria
Rigo, Riccardo
Buglione, Enrico
Bondani, Maria
Nicoletto, Giulia
Mantegazza, Francesco
Sissi, Claudia
Nardo, Luca
Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title_full Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title_fullStr Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title_full_unstemmed Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title_short Double-stranded flanking ends affect the folding kinetics and conformational equilibrium of G-quadruplexes forming sequences within the promoter of KIT oncogene
title_sort double-stranded flanking ends affect the folding kinetics and conformational equilibrium of g-quadruplexes forming sequences within the promoter of kit oncogene
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464035/
https://www.ncbi.nlm.nih.gov/pubmed/34478543
http://dx.doi.org/10.1093/nar/gkab674
work_keys_str_mv AT vescoguglielmo doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT lampertimarco doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT salernodomenico doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT marranoclaudiaadriana doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT cassinavaleria doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT rigoriccardo doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT buglioneenrico doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT bondanimaria doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT nicolettogiulia doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT mantegazzafrancesco doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT sissiclaudia doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene
AT nardoluca doublestrandedflankingendsaffectthefoldingkineticsandconformationalequilibriumofgquadruplexesformingsequenceswithinthepromoterofkitoncogene