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Structural analysis of human 2'-O-ribose methyltransferases involved in mRNA cap structure formation.

Miroslaw Smietanski | Maria Werner | Elzbieta Purta | Katarzyna H Kaminska | Janusz Stepinski | Edward Darzynkiewicz | Marcin Nowotny | Janusz M Bujnicki
Nature communications | 2014

The 5' cap of human messenger RNA contains 2'-O-methylation of the first and often second transcribed nucleotide that is important for its processing, translation and stability. Human enzymes that methylate these nucleotides, termed CMTr1 and CMTr2, respectively, have recently been identified. However, the structures of these enzymes and their mechanisms of action remain unknown. In the present study, we solve the crystal structures of the active CMTr1 catalytic domain in complex with a methyl group donor and a capped oligoribonucleotide, thereby revealing the mechanism of specific recognition of capped RNA. This mechanism differs significantly from viral enzymes, thus providing a framework for their specific targeting. Based on the crystal structure of CMTr1, a comparative model of the CMTr2 catalytic domain is generated. This model, together with mutational analysis, leads to the identification of residues involved in RNA and methyl group donor binding.

Pubmed ID: 24402442

Research resources used in this publication

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Associated grants

  • Agency: Howard Hughes Medical Institute, United States

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