Department of Genetic Engineering and Graduate School of Biotechnology, College of Life Sciences, Kyung Hee University, Yongin 17104, Korea.
Int J Mol Sci. 2020 Nov 25;21(23):8927. doi: 10.3390/ijms21238927.
Most terpenoids are derived from the basic terpene skeletons of geranyl pyrophosphate (GPP, C), farnesyl-PP (FPP, C) and geranylgeranyl-PP (GGPP, C). The -prenyltransferases (PTs) mediate the sequential head-to-tail condensation of an isopentenyl-PP (C) with allylic substrates. The in silico structural comparative analyses of rice -PTs with 136 plant -PT genes allowed twelve rice PTs to be identified as GGPS_LSU (OsGGPS1), homomeric G(G)PS (OsGPS) and GGPS_SSU-II (OsGRP) in Group I; two solanesyl-PP synthase (OsSPS2 and 3) and two polyprenyl-PP synthases (OsSPS1 and 4) in Group II; and five FPSs (OsFPS1, 2, 3, 4 and 5) in Group III. Additionally, several residues in "three floors" for the chain length and several essential domains for enzymatic activities specifically varied in rice, potentiating evolutionarily rice-specific biochemical functions of twelve -PTs. Moreover, expression profiling and localization patterns revealed their functional compartmentation in rice. Taken together, we propose the predicted topology-based working model of rice PTs with corresponding terpene metabolites: GPP/GGPPs mainly in plastoglobuli, SPPs in stroma, PPPs in cytosol, mitochondria and chloroplast and FPPs in cytosol. Our findings could be suitably applied to metabolic engineering for producing functional terpene metabolites in rice systems.
大多数萜类化合物是由基本萜烯骨架衍生而来的,包括香叶基焦磷酸(GPP,C)、法呢基焦磷酸(FPP,C)和香叶基香叶基焦磷酸(GGPP,C)。-prenyltransferases(PTs)介导异戊烯基焦磷酸(C)与烯丙基底物的顺序头到尾缩合。通过对水稻- PTs 与 136 种植物- PT 基因的计算机结构比较分析,鉴定出 12 种水稻 PTs 为 GGPS_LSU(OsGGPS1)、同型 G(G)PS(OsGPS)和 GGPS_SSU-II(OsGRP),属于第 I 组;2 种茄呢醇焦磷酸合酶(OsSPS2 和 3)和 2 种多萜醇焦磷酸合酶(OsSPS1 和 4)属于第 II 组;以及 5 种 FPSs(OsFPS1、2、3、4 和 5)属于第 III 组。此外,在“三层”的几个残基中,对于链长和几个酶活性的必需结构域在水稻中特异性变化,增强了水稻 12 种 PTs 进化特异性的生化功能。此外,表达谱和定位模式揭示了它们在水稻中的功能分区。综上所述,我们提出了基于预测拓扑的水稻 PTs 及其相应萜类代谢物的工作模型:GPP/GGPPs 主要在质体小球中,SSPs 在基质中,PPPs 在细胞质、线粒体和叶绿体中,FPPs 在细胞质中。我们的研究结果可以适用于在水稻系统中生产功能性萜类代谢物的代谢工程。