Max Planck Institute for Chemical Ecology, Department of Biochemistry, Beutenberg Campus, D-07745 Jena, Germany.
Plant Physiol. 2010 Feb;152(2):639-55. doi: 10.1104/pp.109.144691. Epub 2009 Nov 25.
The conifer Picea abies (Norway spruce) defends itself against herbivores and pathogens with a terpenoid-based oleoresin composed chiefly of monoterpenes (C(10)) and diterpenes (C(20)). An important group of enzymes in oleoresin biosynthesis are the short-chain isoprenyl diphosphate synthases that produce geranyl diphosphate (C(10)), farnesyl diphosphate (C(15)), and geranylgeranyl diphosphate (C(20)) as precursors of different terpenoid classes. We isolated a gene from P. abies via a homology-based polymerase chain reaction approach that encodes a short-chain isoprenyl diphosphate synthase making an unusual mixture of two products, geranyl diphosphate (C(10)) and geranylgeranyl diphosphate (C(20)). This bifunctionality was confirmed by expression in both prokaryotic (Escherichia coli) and eukaryotic (P. abies embryogenic tissue) hosts. Thus, this isoprenyl diphosphate synthase, designated PaIDS1, could contribute to the biosynthesis of both major terpene types in P. abies oleoresin. In saplings, PaIDS1 transcript was restricted to wood and bark, and transcript level increased dramatically after methyl jasmonate treatment, which induces the formation of new (traumatic) resin ducts. Polyclonal antibodies localized the PaIDS1 protein to the epithelial cells surrounding the traumatic resin ducts. PaIDS1 has a close phylogenetic relationship to single-product conifer geranyl diphosphate and geranylgeranyl diphosphate synthases. Its catalytic properties and reaction mechanism resemble those of conifer geranylgeranyl diphosphate synthases, except that significant quantities of the intermediate geranyl diphosphate are released. Using site-directed mutagenesis and chimeras of PaIDS1 with single-product geranyl diphosphate and geranylgeranyl diphosphate synthases, specific amino acid residues were identified that alter the relative composition of geranyl to geranylgeranyl diphosphate.
欧洲云杉(挪威云杉)通过萜烯类树脂防御草食动物和病原体,这种树脂主要由单萜(C(10)) 和二萜(C(20)) 组成。在树脂生物合成中,短链异戊烯二磷酸合酶是一个重要的酶类,它可以产生香叶基二磷酸(C(10))、法呢基二磷酸(C(15)) 和香叶基香叶基二磷酸(C(20)),作为不同萜烯类物质的前体。我们通过基于同源性的聚合酶链反应方法从欧洲云杉中分离出一个基因,该基因编码的短链异戊烯二磷酸合酶能够产生两种不寻常的产物混合物,即香叶基二磷酸(C(10)) 和香叶基香叶基二磷酸(C(20))。这种双功能通过在原核(大肠杆菌)和真核(欧洲云杉胚胎组织)宿主中的表达得到了证实。因此,这种异戊烯二磷酸合酶,被命名为 PaIDS1,可能有助于欧洲云杉树脂中两种主要萜烯类型的生物合成。在树苗中,PaIDS1 转录本仅限于木材和树皮,并且在茉莉酸甲酯处理后转录本水平显著增加,这会诱导新的(创伤性)树脂管的形成。多克隆抗体将 PaIDS1 蛋白定位到创伤性树脂管周围的上皮细胞。PaIDS1 与单产物针叶树香叶基二磷酸和香叶基香叶基二磷酸合酶具有密切的系统发育关系。其催化特性和反应机制与针叶树香叶基香叶基二磷酸合酶相似,只是释放了大量的中间产物香叶基二磷酸。通过定点突变和 PaIDS1 与单产物香叶基二磷酸和香叶基香叶基二磷酸合酶的嵌合体,确定了改变香叶基二磷酸与香叶基香叶基二磷酸相对组成的特定氨基酸残基。