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Modifying the Thioester Linkage Affects the Structure of the Acyl Carrier Protein.


ABSTRACT: At the center of many complex biosynthetic pathways, the acyl carrier protein (ACP) shuttles substrates to appropriate enzymatic partners to produce fatty acids and polyketides. Carrier proteins covalently tether their cargo via a thioester linkage to a phosphopantetheine cofactor. Due to the labile nature of this linkage, chemoenzymatic methods have been developed that involve replacement of the thioester with a more stable amide or ester bond. We explored the importance of the thioester bond to the structure of the carrier protein by using solution NMR spectroscopy and molecular dynamics simulations. Remarkably, the replacement of sulfur with other heteroatoms results in significant structural changes, thus suggesting more rigorous selections of isosteric substitutes is needed.

SUBMITTER: Sztain T 

PROVIDER: S-EPMC6663632 | biostudies-literature | 2019 Aug

REPOSITORIES: biostudies-literature

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Modifying the Thioester Linkage Affects the Structure of the Acyl Carrier Protein.

Sztain Terra T   Patel Ashay A   Lee D John DJ   Davis Tony D TD   McCammon J Andrew JA   Burkart Michael D MD  

Angewandte Chemie (International ed. in English) 20190702 32


At the center of many complex biosynthetic pathways, the acyl carrier protein (ACP) shuttles substrates to appropriate enzymatic partners to produce fatty acids and polyketides. Carrier proteins covalently tether their cargo via a thioester linkage to a phosphopantetheine cofactor. Due to the labile nature of this linkage, chemoenzymatic methods have been developed that involve replacement of the thioester with a more stable amide or ester bond. We explored the importance of the thioester bond t  ...[more]

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