Back to Search Start Over

Stabilization of a G-Quadruplex from Unfolding by Replication Protein A Using Potassium and the Porphyrin TMPyP4

Authors :
Fabien Kieken
Gloria E. O. Borgstahl
Luis A. Marky
Aishwarya Prakash
Source :
Journal of Nucleic Acids, Vol 2011 (2011), Journal of Nucleic Acids
Publication Year :
2011
Publisher :
Hindawi Limited, 2011.

Abstract

Replication protein A (RPA) plays an essential role in DNA replication by binding and unfolding non-canonical single-stranded DNA (ssDNA) structures. Of the six RPA ssDNA binding domains (labeled A-F), RPA-CDE selectively binds a G-quadruplex forming sequence (5′-TAGGGGAAGGGTTGGAGTGGGTT-3′called Gq23). In K+, Gq23 forms a mixed parallel/antiparallel conformation, and in Na+Gq23 has a less stable (TMlowered by ∼20∘C), antiparallel conformation. Gq23 is intramolecular and 1D NMR confirms a stable G-quadruplex structure in K+. Full-length RPA and RPA-CDE-core can bind and unfold the Na+form of Gq23 very efficiently, but complete unfolding is not observed with the K+form. Studies with G-quadruplex ligands, indicate that TMPyP4 has a thermal stabilization effect on Gq23 in K+, and inhibits complete unfolding by RPA and RPA-CDE-core. Overall these data indicate that G-quadruplexes present a unique problem for RPA to unfold and ligands, such as TMPyP4, could possibly hinder DNA replication by blocking unfolding by RPA.

Details

ISSN :
2090021X
Volume :
2011
Database :
OpenAIRE
Journal :
Journal of Nucleic Acids
Accession number :
edsair.doi.dedup.....018045cd31c8e249a5752dc94cb8c759
Full Text :
https://doi.org/10.4061/2011/529828