School of Chemistry, Cardiff University Main Building, Park Place, Cardiff, CF10 3AT, UK.
Org Biomol Chem. 2019 Jan 31;17(5):1206-1214. doi: 10.1039/c8ob02821d.
δ-Cadinene synthase (DCS) is a high-fidelity sesquiterpene synthase that generates δ-cadinene as the sole detectable organic product from its natural substrate (E,E)-FDP. Previous work with this enzyme using substrate analogues revealed the ability of DCS to catalyse both 1,10- and 1,6-cyclisations of substrate analogues. To test whether this apparent promiscuity was an artefact of alternate substrate use or an inherent property of the enzyme, aza analogues of the proposed α-bisabolyl cation intermediate were prepared since this cation would be formed after an initial 1,6-cyclisation of FDP. In the presence of 250 μM inorganic disphosphate both (R)- and (S)-aza-bisaboyl cations were potent competitive inhibitors of DCS (Ki = 2.5 ± 0.5 mM and 3.44 ± 1.43 μM, respectively). These compounds were also shown to be potent inhibitors of the 1,6-cyclase amorpha-4,11-diene synthase but not of the 1,10-cyclase aristolochene synthase from Penicillium roquefortii, demonstrating that the 1,6-cyclase activity of DCS is most likely an inherent property of the enzyme even when the natural substrate is used and not an artefact of the use of substrate analogues.
δ-杜松烯合酶(DCS)是一种高保真度的倍半萜合酶,它能够从天然底物(E,E)-FDP 中生成唯一可检测到的有机产物 δ-杜松烯。之前使用该酶的底物类似物进行的研究表明,DCS 能够催化底物类似物的 1,10-和 1,6-环化。为了测试这种明显的混杂性是替代底物使用的假象还是酶的固有特性,制备了α-双醇正离子中间物的氮类似物,因为该正离子将在 FDP 的初始 1,6-环化后形成。在 250 μM 无机二磷酸存在下,(R)-和(S)-氮双醇正离子都是 DCS 的有效竞争性抑制剂(Ki 值分别为 2.5 ± 0.5 mM 和 3.44 ± 1.43 μM)。这些化合物还被证明是 1,6-环化酶 amorpha-4,11-二烯合酶的有效抑制剂,但不是来自青霉属的 1,10-环化酶aristolochene 合酶的抑制剂,这表明即使使用天然底物,DCS 的 1,6-环化酶活性也很可能是酶的固有特性,而不是使用底物类似物的假象。