Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contributing to explain the diversity of their structures and functions. A significant fraction of RNA experimental structures available to date present modified nucleobases, with half of them being involved in H-bonding interactions with other bases, i.e. 'modified base pairs'. Herein we present a systematic investigation of modified base pairs, in the context of experimental RNA structures. To this end, we first compiled an atlas of experimentally observed modified base pairs, for which we recorded occurrences and structural context. Then, for each base pair, we selected a representative for subsequent quantum mechanics calculations, to find out i...
Non-natural (synthetic) nucleobases, including 7-ethynyl- and 7-triazolyl-8-aza-7-deazaadenine, have...
RNA molecules fold into a bewildering variety of complex 3D structures. Almost every new RNA structu...
Non-canonical base pairs contribute immensely to the structural and functional variability of RNA, w...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
H-bonded base pairs containing a chemically modified nucleotide are recurrent structural motifs in R...
Post-transcriptionally modified bases play vital roles in many biochemical processes involving RNA. ...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The wide structural diversity of RNA results in part from the diversity of non-Watson–Crick interact...
Non-natural (synthetic) nucleobases, including 7-ethynyl- and 7-triazolyl-8-aza-7-deazaadenine, have...
RNA molecules fold into a bewildering variety of complex 3D structures. Almost every new RNA structu...
Non-canonical base pairs contribute immensely to the structural and functional variability of RNA, w...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
Posttranscriptional modifications greatly enhance the chemical information of RNA molecules, contrib...
H-bonded base pairs containing a chemically modified nucleotide are recurrent structural motifs in R...
Post-transcriptionally modified bases play vital roles in many biochemical processes involving RNA. ...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The intricate network of interactions observed in RNA three-dimensional structures is often describe...
The wide structural diversity of RNA results in part from the diversity of non-Watson–Crick interact...
Non-natural (synthetic) nucleobases, including 7-ethynyl- and 7-triazolyl-8-aza-7-deazaadenine, have...
RNA molecules fold into a bewildering variety of complex 3D structures. Almost every new RNA structu...
Non-canonical base pairs contribute immensely to the structural and functional variability of RNA, w...