Nuclear magnetic resonance study of G-quadruplex structures formed by d(TG3T) and its modified analogs containing a 50-50 or 30-30 inversion of polarity sites, namely d(30TG50-50G2T30), d(30T50- 50G3T30) and d(50TG30-30G2T5’) demonstrates formation of G-quadruplex structures with tetrameric topology and distinct cation-binding preferences. All oligonucleotides are able to form quadruplex structures with two binding sites, although the modified oligonucleotides also form, in variable amounts, quadruplex structures with only one bound cation. The inter-quartet cavities at the inversion of polarity sites bind ammonium ions less tightly than a naturally occurring 50-30 backbone. Exchange of 15NH+ 4 ions between G-quadruplex and bulk solution is faster at the 30-end in comparison to the 50-end. In addition to strand directionality, cation movement is influenced by formation of an all-syn G-quartet. Formation of such quartet has been observed also for the parent d(TG3T) that besides the canonical quadruplex with only all-anti G-quartets, forms a tetramolecular parallel quadruplex containing one all-syn G-quartet, never observed before in unmodified quadruplex structures.

Strand directionality affects cation binding and movement within tetramolecular G-quadruplexes / Primoz, Sket; Virgilio, Antonella; Esposito, Veronica; Galeone, Aldo; Janez, Plavec. - In: NUCLEIC ACIDS RESEARCH. - ISSN 1362-4962. - 40:21(2012), pp. 11047-11057. [10.1093/nar/gks851]

Strand directionality affects cation binding and movement within tetramolecular G-quadruplexes

VIRGILIO, ANTONELLA;ESPOSITO, VERONICA;GALEONE, ALDO;
2012

Abstract

Nuclear magnetic resonance study of G-quadruplex structures formed by d(TG3T) and its modified analogs containing a 50-50 or 30-30 inversion of polarity sites, namely d(30TG50-50G2T30), d(30T50- 50G3T30) and d(50TG30-30G2T5’) demonstrates formation of G-quadruplex structures with tetrameric topology and distinct cation-binding preferences. All oligonucleotides are able to form quadruplex structures with two binding sites, although the modified oligonucleotides also form, in variable amounts, quadruplex structures with only one bound cation. The inter-quartet cavities at the inversion of polarity sites bind ammonium ions less tightly than a naturally occurring 50-30 backbone. Exchange of 15NH+ 4 ions between G-quadruplex and bulk solution is faster at the 30-end in comparison to the 50-end. In addition to strand directionality, cation movement is influenced by formation of an all-syn G-quartet. Formation of such quartet has been observed also for the parent d(TG3T) that besides the canonical quadruplex with only all-anti G-quartets, forms a tetramolecular parallel quadruplex containing one all-syn G-quartet, never observed before in unmodified quadruplex structures.
2012
Strand directionality affects cation binding and movement within tetramolecular G-quadruplexes / Primoz, Sket; Virgilio, Antonella; Esposito, Veronica; Galeone, Aldo; Janez, Plavec. - In: NUCLEIC ACIDS RESEARCH. - ISSN 1362-4962. - 40:21(2012), pp. 11047-11057. [10.1093/nar/gks851]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/510364
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