Issue 48, 2013

There is no universal mechanism for the cleavage of RNA model compounds in the presence of metal ion catalysts

Abstract

The transesterification of uridine 3′-phosphodiesters with a wide range of leaving group alcohols has been studied in the presence of monometallic and bimetallic complexes. The catalysis of isomerization of the phosphodiester bond was studied with a nucleoside 3′-phosphonate as a substrate. The results obtained are consistent with a step-wise mechanism, where metal ions are able to enhance both the nucleophilic attack and the departure of the leaving group. The mechanism of the catalysis depends on the acidity of the catalyst and of the leaving group alcohol: a change from general base catalysis to general acid catalysis is proposed. Catalysis of the isomerization requires efficient stabilization of the phosphorane by strong interactions with the catalyst. Catalytic strategies utilised by bimetallic complexes are also briefly discussed.

Graphical abstract: There is no universal mechanism for the cleavage of RNA model compounds in the presence of metal ion catalysts

Supplementary files

Article information

Article type
Paper
Submitted
29 Jul 2013
Accepted
30 Sep 2013
First published
30 Sep 2013

Org. Biomol. Chem., 2013,11, 8324-8339

There is no universal mechanism for the cleavage of RNA model compounds in the presence of metal ion catalysts

H. Korhonen, T. Koivusalo, S. Toivola and S. Mikkola, Org. Biomol. Chem., 2013, 11, 8324 DOI: 10.1039/C3OB41554F

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