Effect of loops and G-quartets on the stability of RNA G-quadruplexes

Pandey, Satyaprakash ; Agarwala, Prachi ; Maiti, Souvik (2013) Effect of loops and G-quartets on the stability of RNA G-quadruplexes The Journal of Physical Chemistry B, 117 (23). pp. 6896-6905. ISSN 1520-6106

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Official URL: http://pubs.acs.org/doi/abs/10.1021/jp401739m

Related URL: http://dx.doi.org/10.1021/jp401739m

Abstract

The loop length, loop composition, salt concentration, and number of G-quartets are major determinants of G-quadruplex stability. We examined the effect of each of these factors on the thermal stability and folding topology of a library of RNA quadruplexes. The thermal stability of G2 and G3 RNA quadruplexes was investigated upon varying the loop length (from 1-1-1 to 15-15-15) and salt concentration (from 1 to 100 mM KCl), while the effect of loop composition was explored using 18 naturally occurring potential RNA quadruplexes predicted in untranslated regions (UTRs). We found loop length and quadruplex stability to be inversely related for G2 RNA quadruplexes and G3 RNA quadruplexes with shorter loops. However, melting temperature saturates for G3 RNA quadruplexes with longer loops. RNA G-quadruplexes with longer loops (G3 15-15-15) displayed Tm values significantly higher than the physiological temperature. This study thus highlights the need to modify the consensus motif presently used by quadruplex prediction tools. An increase in the loop size from 7 bases to 15 bases in the consensus motif will add to its predictive value for the discovery of potential RNA quadruplexes across transcriptomes.

Item Type:Article
Source:Copyright of this article belongs to American Chemical Society.
ID Code:103408
Deposited On:02 Feb 2018 03:48
Last Modified:02 Feb 2018 03:48

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