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Structural Basis of Tryptophan Reverse N-Prenylation Catalyzed by CymD.

Biochemistry. 2019; 
RooseBenjamin W,ChristiansonDav
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Gene Synthesis The codon-optimized cymD gene from S. arenicola CNS-205 (GenBank accession no. ABW00334.1; UniProt accession no. A8M6W6) was purchased from GenScript. Get A Quote

摘要

Indole prenyltransferases catalyze the prenylation of l-tryptophan (l-Trp) and other indoles to produce a diverse set of natural products in bacteria, fungi, and plants, many of which possess useful biological properties. Among this family of enzymes, CymD from catalyzes the reverse N1 prenylation of l-Trp, an unusual reaction given the poor nucleophilicity of the indole nitrogen. CymD utilizes dimethylallyl diphosphate (DMAPP) as the prenyl donor, catalyzing the dissociation of the diphosphate leaving group followed by nucleophilic attack of the indole nitrogen at the tertiary carbon of the dimethylallyl cation. To better understand the structural basis of selective indole N-alkylation reactions i... More

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