Literature DB >> 15697219

Molecular determinants for DNA minor groove recognition: design of a bis-guanidinium derivative of ethidium that is highly selective for AT-rich DNA sequences.

Christian Bailly1, Reem K Arafa, Farial A Tanious, William Laine, Christèle Tardy, Amélie Lansiaux, Pierre Colson, David W Boykin, W David Wilson.   

Abstract

The phenanthridinium dye ethidium bromide is a prototypical DNA intercalating agent. For decades, this anti-trypanosomal agent has been known to intercalate into nucleic acids, with little preference for particular sequences. Only polydA-polydT tracts are relatively refractory to ethidium intercalation. In an effort to tune the sequence selectivity of known DNA binding agents, we report here the synthesis and detailed characterization of the mode of binding to DNA of a novel ethidium derivative possessing two guanidinium groups at positions 3 and 8. This compound, DB950, binds to DNA much more tightly than ethidium and exhibits distinct DNA-dependent absorption and fluorescence properties. The study of the mode of binding to DNA by means of circular and electric linear dichroism revealed that, unlike ethidium, DB950 forms minor groove complexes with AT sequences. Accurate quantification of binding affinities by surface plasmon resonance using A(n)T(n) hairpin oligomer indicated that the interaction of DB950 is over 10-50 times stronger than that of ethidium and comparable to that of the known minor groove binder furamidine. DB950 interacts weakly with GC sites by intercalation. DNase I footprinting experiments performed with different DNA fragments established that DB950 presents a pronounced selectivity for AT-rich sites, identical with that of furamidine. The replacement of the amino groups of ethidium with guanidinium groups has resulted in a marked gain of both affinity and sequence selectivity. DB950 provides protection against DNase I cleavage at AT-containing sites which frequently correspond to regions of enhanced cleavage in the presence of ethidium. Although DB950 maintains a planar phenanthridinium chromophore, the compound no longer intercalates at AT sites. The guanidinium groups of DB950, just like the amidinium group of furamidine (DB75), are the critical determinants for recognition of AT binding sites in DNA. The chemical modulation of the ethidium exocyclic amines is a profitable option to tune the nucleic acid recognition properties of phenylphenanthridinium dyes.

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Year:  2005        PMID: 15697219     DOI: 10.1021/bi047983n

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  6 in total

1.  Arginine mimetics using α-guanidino acids: introduction of functional groups and stereochemistry adjacent to recognition guanidiniums in peptides.

Authors:  Shalini Balakrishnan; Michael J Scheuermann; Neal J Zondlo
Journal:  Chembiochem       Date:  2011-12-23       Impact factor: 3.164

2.  Molecular docking of intercalators and groove-binders to nucleic acids using Autodock and Surflex.

Authors:  Patrick A Holt; Jonathan B Chaires; John O Trent
Journal:  J Chem Inf Model       Date:  2008-07-22       Impact factor: 4.956

3.  Induction of unique structural changes in guanine-rich DNA regions by the triazoloacridone C-1305, a topoisomerase II inhibitor with antitumor activities.

Authors:  Krzysztof Lemke; Marcin Wojciechowski; William Laine; Christian Bailly; Pierre Colson; Maciej Baginski; Annette K Larsen; Andrzej Skladanowski
Journal:  Nucleic Acids Res       Date:  2005-10-27       Impact factor: 16.971

Review 4.  Come-back of phenanthridine and phenanthridinium derivatives in the 21st century.

Authors:  Lidija-Marija Tumir; Marijana Radić Stojković; Ivo Piantanida
Journal:  Beilstein J Org Chem       Date:  2014-12-10       Impact factor: 2.883

5.  PhenQE8, a Novel Ligand of the Human Telomeric Quadruplex.

Authors:  Patricia B Gratal; Julia G Quero; Adrián Pérez-Redondo; Zoila Gándara; Lourdes Gude
Journal:  Int J Mol Sci       Date:  2021-01-13       Impact factor: 5.923

6.  Synthesis of phenanthridines via palladium-catalyzed picolinamide-directed sequential C-H functionalization.

Authors:  Ryan Pearson; Shuyu Zhang; Gang He; Nicola Edwards; Gong Chen
Journal:  Beilstein J Org Chem       Date:  2013-05-08       Impact factor: 2.883

  6 in total

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