The University of Southampton
University of Southampton Institutional Repository

Thermodynamic and kinetic stability of intermolecular triple helices containing different proportions of C+·GC and T·AT triplets

Thermodynamic and kinetic stability of intermolecular triple helices containing different proportions of C+·GC and T·AT triplets
Thermodynamic and kinetic stability of intermolecular triple helices containing different proportions of C+·GC and T·AT triplets
We have used oligonucleotides containing appropriately placed fluorophores and quenchers to measure the stability of 15mer intermolecular triplexes with third strands consisting of repeats of TTT, TTC, TCC and TCTC. In the presence of 200 mM sodium (pH 5.0) triplexes that contain only T·AT triplets are unstable and melt below 30°C. In contrast, triplets with repeats of TTC, TCC and CTCT melt at 67, 72 and 76°C, respectively. The most stable complex is generated by the sequence containing alternating C+·GC and T·AT triplets. All four triplexes are stabilised by increasing the ionic strength or by the addition of magnesium, although triplexes with a higher proportion of C+·GC triplets are much less sensitive to changes in the ionic conditions. The enthalpies of formation of these triplexes were estimated by examining the concentration dependence of the melting profiles and show that, in the presence of 200 mM sodium at pH 5.0, each C+·GC triplet contributes about 30 kJ mol–1, while each T·AT contributes only 11 kJ mol–1. Kinetic experiments with these oligonucleotides show that in 200 mM sodium (pH 5.0) repeats of TCC and TTC have half-lives of ~20 min, while the triplex with alternating C+·GC and T·AT triplets has a half-life of ~3 days. In contrast, the dissociation kinetics of the triplex containing only T·AT are too fast to measure.
cytosine protonation, divalent-cations, gene-expression, dna triplexes, sequence, oligonucleotide, motif, ph, recognition, dependence
0305-1048
5598-5606
James, Peter L.
ff85d76b-958d-428c-b864-f075c9770613
Brown, Tom
a64aae36-bb30-42df-88a2-11be394e8c89
Fox, Keith R.
9da5debc-4e45-473e-ab8c-550d1104659f
James, Peter L.
ff85d76b-958d-428c-b864-f075c9770613
Brown, Tom
a64aae36-bb30-42df-88a2-11be394e8c89
Fox, Keith R.
9da5debc-4e45-473e-ab8c-550d1104659f

James, Peter L., Brown, Tom and Fox, Keith R. (2003) Thermodynamic and kinetic stability of intermolecular triple helices containing different proportions of C+·GC and T·AT triplets. Nucleic Acids Research, 31 (19), 5598-5606. (doi:10.1093/nar/gkg782).

Record type: Article

Abstract

We have used oligonucleotides containing appropriately placed fluorophores and quenchers to measure the stability of 15mer intermolecular triplexes with third strands consisting of repeats of TTT, TTC, TCC and TCTC. In the presence of 200 mM sodium (pH 5.0) triplexes that contain only T·AT triplets are unstable and melt below 30°C. In contrast, triplets with repeats of TTC, TCC and CTCT melt at 67, 72 and 76°C, respectively. The most stable complex is generated by the sequence containing alternating C+·GC and T·AT triplets. All four triplexes are stabilised by increasing the ionic strength or by the addition of magnesium, although triplexes with a higher proportion of C+·GC triplets are much less sensitive to changes in the ionic conditions. The enthalpies of formation of these triplexes were estimated by examining the concentration dependence of the melting profiles and show that, in the presence of 200 mM sodium at pH 5.0, each C+·GC triplet contributes about 30 kJ mol–1, while each T·AT contributes only 11 kJ mol–1. Kinetic experiments with these oligonucleotides show that in 200 mM sodium (pH 5.0) repeats of TCC and TTC have half-lives of ~20 min, while the triplex with alternating C+·GC and T·AT triplets has a half-life of ~3 days. In contrast, the dissociation kinetics of the triplex containing only T·AT are too fast to measure.

This record has no associated files available for download.

More information

Published date: 1 October 2003
Keywords: cytosine protonation, divalent-cations, gene-expression, dna triplexes, sequence, oligonucleotide, motif, ph, recognition, dependence

Identifiers

Local EPrints ID: 19989
URI: http://eprints.soton.ac.uk/id/eprint/19989
ISSN: 0305-1048
PURE UUID: 07f81ddd-6da4-4ca5-8729-8ce2c7d76ac5
ORCID for Keith R. Fox: ORCID iD orcid.org/0000-0002-2925-7315

Catalogue record

Date deposited: 24 Feb 2006
Last modified: 16 Mar 2024 02:36

Export record

Altmetrics

Contributors

Author: Peter L. James
Author: Tom Brown
Author: Keith R. Fox ORCID iD

Download statistics

Downloads from ePrints over the past year. Other digital versions may also be available to download e.g. from the publisher's website.

View more statistics

Atom RSS 1.0 RSS 2.0

Contact ePrints Soton: eprints@soton.ac.uk

ePrints Soton supports OAI 2.0 with a base URL of http://eprints.soton.ac.uk/cgi/oai2

This repository has been built using EPrints software, developed at the University of Southampton, but available to everyone to use.

We use cookies to ensure that we give you the best experience on our website. If you continue without changing your settings, we will assume that you are happy to receive cookies on the University of Southampton website.

×