Unraveling G‐Quadruplex and i‐Motif Coexistence Within a Double‐Stranded DNA

D Davide Auricchio (Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy) M Michele Ghezzo (Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy) U Uroš Zavrtanik (Department of Physical Chemistry Faculty of Chemistry and Chemical Technology University of Ljubljana Ljubljana Slovenia) L Luca Bertini V Valeria Libera (Department of Physics and Geology University of Perugia Perugia Italy) R Riccardo Rigo (Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy) J Jurij Lah (Department of Physical Chemistry Faculty of Chemistry and Chemical Technology University of Ljubljana Ljubljana Slovenia) C Claudia Sissi

Abstract

ABSTRACT DNA can transiently fold into variable arrangements, which are expected to exploit regulatory functions. Guanine‐rich sequences can fold into G‐quadruplexes (G4s), while the complementary strand adopts potentially i‐Motif (iM) arrangements. Their concomitant formation at the same genomic site is still under debate. However, recently, single‐molecule analyses have shown the simultaneous G4 and iM presence within a double‐stranded (ds) DNA context, addressing them as synergic blockers of replication fork progression. While these findings point to a functional interplay between G4 and iM, a deeper understanding of the factors enabling their coexistence remains unclear. In this work, we unravel the equilibria governing G4‐ and iM‐folding within dsDNA, adopting an extensive biophysical approach allowing analysis of an optimized modular system, scalable across constructs of increasing molecular complexity. Our findings corroborate the simultaneous formation model and further clarify the thermodynamic determinants driving duplex denaturation and the favorable folding of stable G4 and iM structures.

Article Details

Volume / Issue Vol. 65, Issue 31
Published July 27, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

D

Davide Auricchio

Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy

M

Michele Ghezzo

Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy

U

Uroš Zavrtanik

Department of Physical Chemistry Faculty of Chemistry and Chemical Technology University of Ljubljana Ljubljana Slovenia

L

Luca Bertini

V

Valeria Libera

Department of Physics and Geology University of Perugia Perugia Italy

R

Riccardo Rigo

Department of Pharmaceutical and Pharmacological Sciences University of Padova Padova Italy

J

Jurij Lah

Department of Physical Chemistry Faculty of Chemistry and Chemical Technology University of Ljubljana Ljubljana Slovenia

C

Claudia Sissi