Issue 7, 2011

Entropy and Mg2+ control ligand affinity and specificity in the malachite green binding RNA aptamer

Abstract

The binding of small molecule targets by RNA aptamers provides an excellent model to study the versatility of RNA function. The malachite green aptamer binds and recognizes its ligand via stacking and electrostatic interactions. The binding of the aptamer to its original selection target and three related molecules was determined by isothermal titration calorimetry, equilibrium dialysis, and fluorescence titration. The results reveal that the entropy of complex formation plays a large role in determining binding affinity and ligand specificity. These data combined with previous structural studies show that metal ions are required to stabilize the complexes with non-native ligands whereas the complex with the original selection target is stable at low salt and in the absence of divalent metal ions.

Graphical abstract: Entropy and Mg2+ control ligand affinity and specificity in the malachite green binding RNA aptamer

Supplementary files

Article information

Article type
Paper
Submitted
24 Feb 2011
Accepted
30 Mar 2011
First published
26 Apr 2011

Mol. BioSyst., 2011,7, 2156-2163

Entropy and Mg2+ control ligand affinity and specificity in the malachite green binding RNA aptamer

J. Bernard Da Costa and T. Dieckmann, Mol. BioSyst., 2011, 7, 2156 DOI: 10.1039/C1MB05075C

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