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NAD+-dependent synthesis of a 5'-phospho-ADP-ribosylated RNA/DNA cap by RNA 2'-phosphotransferase Tpt1.

Nucleic Acids Res.. 2018-10; 
MunirAnnum,BanerjeeAnkan,ShumanSte
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Gene Synthesis … The Tpt1 ORFs from A. pernix (Uniprot: Q9YFP5), Chaetomium thermophilum (NCBI accession XP_006693007.1) and Homo sapiens (Uniprot: Q86TN4) were synthesized by Genscript and then inserted into the NdeI and XhoI sites of pET28a … Get A Quote

摘要

RNA 2'-phosphotransferase Tpt1 converts an internal RNA 2'-monophosphate to a 2'-OH via a two-step NAD+-dependent mechanism in which: (i) the 2'-phosphate attacks the C1″ of NAD+ to expel nicotinamide and form a 2'-phospho-ADP-ribosylated RNA intermediate; and (ii) the ADP-ribose O2″ attacks the phosphate of the RNA 2'-phospho-ADPR intermediate to expel the RNA 2'-OH and generate ADP-ribose 1″-2″ cyclic phosphate. Tpt1 is an essential component of the fungal tRNA splicing pathway that generates a unique 2'-PO4, 3'-5' phosphodiester splice junction during tRNA ligation. The wide distribution of Tpt1 enzymes in taxa that have no fungal-type RNA ligase raises the prospect that Tpt1 might catalyze reacti... More

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