Authors
Jesko Koehnke, Greg Mann, Andrew F Bent, Hannes Ludewig, Sally Shirran, Catherine Botting, Tomas Lebl, Wael E Houssen, Marcel Jaspars, James H Naismith
Publication date
2015/8
Journal
Nature chemical biology
Volume
11
Issue
8
Pages
558-563
Publisher
Nature Publishing Group
Description
Regioselective modification of amino acids within the context of a peptide is common to a number of biosynthetic pathways, and many of the resulting products have potential as therapeutics. The ATP-dependent enzyme LynD heterocyclizes multiple cysteine residues to thiazolines within a peptide substrate. The enzyme requires the substrate to have a conserved N-terminal leader for full activity. Catalysis is almost insensitive to immediately flanking residues in the substrate, suggesting that recognition occurs distant from the active site. Nucleotide and peptide substrate co-complex structures of LynD reveal that the substrate leader peptide binds to and extends the β-sheet of a conserved domain of LynD, whereas catalysis is accomplished in another conserved domain. The spatial segregation of catalysis from recognition combines seemingly contradictory properties of regioselectivity and promiscuity, and it appears …
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