Enzymatic Timing and Tailoring of Macrolactamization in Syringolin Biosynthesis
William M. Wuest, Daniel Krahn, Markus Kaiser, Christopher T. Walsh
Abstract
William M. Wuest, Daniel Krahn, Markus Kaiser, Christopher T. Walsh
Abstract
The enzymatic activation of 3,4-dehydrolysine and subsequent formation of the 12-membered syringolin macrolactam were investigated. The timing of the desaturation was elucidated through the analysis of the initial adenylation domain of SylD. The SylD-TTE didomain was characterized and demonstrated to be the catalyst for formation of 12-membered macrocycles. When the SylD thioesterase domain was reacted with a family of acyclic CoA both natural and unnatural macrocycles were generated.
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The enzymatic activation of 3,4-dehydrolysine and subsequent formation of the 12-membered syringolin macrolactam were investigated. The timing of the desaturation was elucidated through the analysis of the initial adenylation domain of SylD. The SylD-TTE didomain was characterized and demonstrated to be the catalyst for formation of 12-membered macrocycles. When the SylD thioesterase domain was reacted with a family of acyclic CoA both natural and unnatural macrocycles were generated.
Key concepts: Thioesterase, Chemistry, Adenylylation, Enzyme, Catalysis, Biosynthesis, Domain (mathematical analysis), Stereochemistry