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DNA G-quadruplexes are uniquely stable in the presence of denaturants and monovalent cations.


ABSTRACT: Ions in the Hofmeister series exhibit varied effects on biopolymers. Those classed as kosmotropes generally stabilize secondary structure, and those classed as chaotropes generally destabilize secondary structure. Here, we report that several anionic chaotropes exhibit unique effects on one DNA secondary structure - a G quadruplex. These chaotropes exhibit the expected behaviour (destabilization of secondary structure) in two other structural contexts: a DNA duplex and i-Motifs. Uniquely among secondary structures, we observe that G quadruplexes are comparatively insensitive to the presence of anionic chaotropes, but not other denaturants. Further, the presence of equimolar NaCl provided greater mitigation of the destabilization caused by other non-anionic denaturants. These results are consistent with the presence of monovalent cations providing an especially pronounced stabilizing effect to G quadruplexes when studied in denaturing solution conditions.

SUBMITTER: Hoog TG 

PROVIDER: S-EPMC8885576 | biostudies-literature | 2022 Jul

REPOSITORIES: biostudies-literature

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DNA G-quadruplexes are uniquely stable in the presence of denaturants and monovalent cations.

Hoog Tanner G TG   Pawlak Matthew R MR   Bachan Benjamin F BF   Engelhart Aaron E AE  

Biochemistry and biophysics reports 20220226


Ions in the Hofmeister series exhibit varied effects on biopolymers. Those classed as kosmotropes generally stabilize secondary structure, and those classed as chaotropes generally destabilize secondary structure. Here, we report that several anionic chaotropes exhibit unique effects on one DNA secondary structure - a G quadruplex. These chaotropes exhibit the expected behaviour (destabilization of secondary structure) in two other structural contexts: a DNA duplex and i-Motifs. Uniquely among s  ...[more]

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