Izoré Thierry, Candace Ho Y T, Kaczmarski Joe A, Gavriilidou Athina, Chow Ka Ho, Steer David L, Goode Robert J A, Schittenhelm Ralf B, Tailhades Julien, Tosin Manuela, Challis Gregory L, Krenske Elizabeth H, Ziemert Nadine, Jackson Colin J, Cryle Max J
Department of Biochemistry and Molecular Biology, The Monash Biomedicine Discovery Institute, Monash University, Clayton, VIC, Australia.
EMBL Australia, Monash University, Clayton, VIC, Australia.
Nat Commun. 2021 May 4;12(1):2511. doi: 10.1038/s41467-021-22623-0.
Non-ribosomal peptide synthetases are important enzymes for the assembly of complex peptide natural products. Within these multi-modular assembly lines, condensation domains perform the central function of chain assembly, typically by forming a peptide bond between two peptidyl carrier protein (PCP)-bound substrates. In this work, we report structural snapshots of a condensation domain in complex with an aminoacyl-PCP acceptor substrate. These structures allow the identification of a mechanism that controls access of acceptor substrates to the active site in condensation domains. The structures of this complex also allow us to demonstrate that condensation domain active sites do not contain a distinct pocket to select the side chain of the acceptor substrate during peptide assembly but that residues within the active site motif can instead serve to tune the selectivity of these central biosynthetic domains.
非核糖体肽合成酶是用于组装复杂肽类天然产物的重要酶。在这些多模块装配线上,缩合结构域执行链组装的核心功能,通常是通过在两个与肽基载体蛋白(PCP)结合的底物之间形成肽键来实现。在这项工作中,我们报告了一个缩合结构域与氨酰基-PCP受体底物形成复合物的结构快照。这些结构使我们能够确定一种控制受体底物进入缩合结构域活性位点的机制。该复合物的结构还使我们能够证明,缩合结构域活性位点在肽组装过程中不包含用于选择受体底物侧链的独特口袋,而是活性位点基序内的残基可用于调节这些核心生物合成结构域的选择性。