Technische Universität Darmstadt, Plant Biotechnology and Metabolic Engineering, Schnittspahnstraße 4, 64287, Darmstadt, Germany.
Centre for Synthetic Biology, Technical University of Darmstadt, 64287, Darmstadt, Germany.
Chembiochem. 2022 Jan 5;23(1):e202100465. doi: 10.1002/cbic.202100465. Epub 2021 Nov 5.
We performed mutagenesis on a regular isoprenyl diphosphate synthase (IDS), neryl diphosphate synthase from Solanum lycopersicum (SlNPPS), that has a structurally related analogue performing non-head-to-tail coupling of two dimethylallyl diphosphate (DMAPP) units, lavandulyl diphosphate synthase from Lavandula x intermedia (LiLPPS). Wild-type SlNPPS catalyses regular coupling of isopentenyl diphosphate (IPP) and DMAPP in cis-orientation resulting in the formation of neryl diphosphate. However, if the enzyme is fed with DMAPP only, it is able to catalyse the coupling of two DMAPP units and synthesizes two irregular monoterpene diphosphates; their structures were elucidated by the NMR analysis of their dephosphorylation products. One of the alcohols is lavandulol. The second compound is the trans-isomer of planococcol, the first example of an irregular cyclobutane monoterpene with this stereochemical configuration. The irregular activity of SlNPPS constitutes 0.4 % of its regular activity and is revealed only if the enzyme is supplied with DMAPP in the absence of IPP. The exchange of asparagine 88 for histidine considerably enhanced the non-head-to-tail coupling. While still only observed in the absence of IPP, irregular activity of the mutant reaches 13.1 % of its regular activity. The obtained results prove that regular IDS are promising starting points for protein engineering aiming at the development of irregular activities and leading to novel monoterpene structures.
我们对一种常规的异戊二烯二磷酸合酶(IDS)进行了诱变,即来自番茄的香叶基二磷酸合酶(SlNPPS),它具有结构相关的类似物,能够进行两个二甲基烯丙基二磷酸(DMAPP)单元的非头对头偶联,即薰衣草烯二磷酸合酶来自 Lavandula x intermedia(LiLPPS)。野生型 SlNPPS 催化顺式取向的异戊烯二磷酸(IPP)和 DMAPP 的常规偶联,导致香叶基二磷酸的形成。然而,如果仅向酶中添加 DMAPP,它就能够催化两个 DMAPP 单元的偶联,并合成两种不规则的单萜二磷酸;它们的结构通过对其去磷酸化产物的 NMR 分析得到阐明。其中一种醇是薰衣草醇。第二种化合物是 planococcol 的反式异构体,这是第一个具有这种立体化学构型的不规则环丁烷单萜。SlNPPS 的不规则活性构成其常规活性的 0.4%,并且仅在酶在不存在 IPP 的情况下供应 DMAPP 时才显现出来。将天冬酰胺 88 替换为组氨酸大大增强了非头对头偶联。尽管仍然仅在不存在 IPP 的情况下观察到,但突变体的不规则活性达到其常规活性的 13.1%。获得的结果证明,常规 IDS 是针对不规则活性开发的蛋白质工程的有前途的起点,并导致新型单萜结构的产生。