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Evoking picomolar binding in RNA by a single phosphorodithioate linkage

Authors :
Tianzhi Wang
Hong Min Liu
Nehemiah Cox
Tom Hassell
Karen Mercier
N. Dinuka Abeydeera
Martin Egli
Daniella M. Mizurini
Barbara Nawrot
Pradeep S. Pallan
Terry P. Lybrand
Fatima-Ezzahra Hibti
Chiraz Frydman
Carlos Martinez
Richard H. Gomer
Xianbin Yang
Malgorzata Sierant
Anil K. Sood
Robson Q. Monteiro
Jonas N. Conde
Feng Wu Liu
Source :
Nucleic Acids Research
Publication Year :
2016
Publisher :
Oxford University Press (OUP), 2016.

Abstract

RNA aptamers are synthetic oligonucleotide-based affinity molecules that utilize unique three-dimensional structures for their affinity and specificity to a target such as a protein. They hold the promise of numerous advantages over biologically produced antibodies; however, the binding affinity and specificity of RNA aptamers are often insufficient for successful implementation in diagnostic assays or as therapeutic agents. Strong binding affinity is important to improve the downstream applications. We report here the use of the phosphorodithioate (PS2) substitution on a single nucleotide of RNA aptamers to dramatically improve target binding affinity by ∼1000-fold (from nanomolar to picomolar). An X-ray co-crystal structure of the α-thrombin:PS2-aptamer complex reveals a localized induced-fit rearrangement of the PS2-containing nucleotide which leads to enhanced target interaction. High-level quantum mechanical calculations for model systems that mimic the PS2 moiety and phenylalanine demonstrate that an edge-on interaction between sulfur and the aromatic ring is quite favorable, and also confirm that the sulfur analogs are much more polarizable than the corresponding phosphates. This favorable interaction involving the sulfur atom is likely even more significant in the full aptamer-protein complexes than in the model systems.

Details

ISSN :
13624962 and 03051048
Volume :
44
Database :
OpenAIRE
Journal :
Nucleic Acids Research
Accession number :
edsair.doi.dedup.....2c7663d79c762fd41c04c251164e5da0
Full Text :
https://doi.org/10.1093/nar/gkw725