Mbatha Sbusisiwe Z, Back Catherine R, Devine Andrew J, Mulliner Hannah M, Johns Samuel T, Lewin Harry, Cheung Kaiman A, Zorn Katja, Stach James E M, Hayes Martin A, van der Kamp Marc W, Race Paul R, Willis Christine L
School of Chemistry, University of Bristol Bristol BS8 1TS UK
School of Biochemistry, University of Bristol Bristol BS8 1TD UK.
Chem Sci. 2024 Aug 12;15(34):14009-15. doi: 10.1039/d4sc03253e.
The abyssomicins are a structurally intriguing family of bioactive natural products that include compounds with potent antibacterial, antitumour and antiviral activities. The biosynthesis of the characteristic abyssomicin spirotetronate core occurs an enzyme-catalysed intramolecular Diels-Alder reaction, which proceeds one of two distinct stereochemical pathways to generate products differing in configuration at the C15 spirocentre. Using the purified spirotetronate cyclases AbyU (from abyssomicin C/atrop-abyssomicin C biosynthesis) and AbmU (from abyssomicin 2/neoabyssomicin biosynthesis), in combination with synthetic substrate analogues, here we show that stereoselectivity in the spirotetronate-forming [4 + 2]-cycloaddition is controlled by a combination of factors attributable to both the enzyme and substrate. Furthermore, an achiral substrate was enzymatically cyclised to a single enantiomer of a spirocyclic product. X-ray crystal structures, molecular dynamics simulations, and assessment of substrate binding affinity and reactivity in both AbyU and AbmU establish the molecular determinants of stereochemical control in this important class of biocatalysts.
阿比斯米星是一类结构引人入胜的生物活性天然产物,其中包括具有强效抗菌、抗肿瘤和抗病毒活性的化合物。阿比斯米星特征性的螺四内酯核心的生物合成通过一种酶催化的分子内狄尔斯-阿尔德反应进行,该反应通过两种不同的立体化学途径之一进行,以生成在C15螺中心构型不同的产物。利用纯化的螺四内酯环化酶AbyU(来自阿比斯米星C/阿托-阿比斯米星C的生物合成)和AbmU(来自阿比斯米星2/新阿比斯米星的生物合成),结合合成底物类似物,我们在此表明,螺四内酯形成的[4+2]环加成反应中的立体选择性受酶和底物共同作用的多种因素控制。此外,一种非手性底物被酶催化环化为螺环产物的单一对映体。X射线晶体结构、分子动力学模拟以及对AbyU和AbmU中底物结合亲和力和反应性的评估,确定了这类重要生物催化剂中立体化学控制的分子决定因素。