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金鱼草法尼基二磷酸合酶的小亚基在体内改变了烟草牻牛儿基牻牛儿基二磷酸合酶的链长特异性。

The small subunit of snapdragon geranyl diphosphate synthase modifies the chain length specificity of tobacco geranylgeranyl diphosphate synthase in planta.

机构信息

Department of Horticulture and Landscape Architecture, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Plant Cell. 2009 Dec;21(12):4002-17. doi: 10.1105/tpc.109.071282. Epub 2009 Dec 22.

Abstract

Geranyl diphosphate (GPP), the precursor of many monoterpene end products, is synthesized in plastids by a condensation of dimethylallyl diphosphate and isopentenyl diphosphate (IPP) in a reaction catalyzed by homodimeric or heterodimeric GPP synthase (GPPS). In the heterodimeric enzymes, a noncatalytic small subunit (GPPS.SSU) determines the product specificity of the catalytic large subunit, which may be either an active geranylgeranyl diphosphate synthase (GGPPS) or an inactive GGPPS-like protein. Here, we show that expression of snapdragon (Antirrhinum majus) GPPS.SSU in tobacco (Nicotiana tabacum) plants increased the total GPPS activity and monoterpene emission from leaves and flowers, indicating that the introduced catalytically inactive GPPS.SSU found endogenous large subunit partner(s) and formed an active snapdragon/tobacco GPPS in planta. Bimolecular fluorescence complementation and in vitro enzyme analysis of individual and hybrid proteins revealed that two of four GGPPS-like candidates from tobacco EST databases encode bona fide GGPPS that can interact with snapdragon GPPS.SSU and form a functional GPPS enzyme in plastids. The formation of chimeric GPPS in transgenic plants also resulted in leaf chlorosis, increased light sensitivity, and dwarfism due to decreased levels of chlorophylls, carotenoids, and gibberellins. In addition, these transgenic plants had reduced levels of sesquiterpene emission, suggesting that the export of isoprenoid intermediates from the plastids into the cytosol was decreased. These results provide genetic evidence that GPPS.SSU modifies the chain length specificity of phylogenetically distant GGPPS and can modulate IPP flux distribution between GPP and GGPP synthesis in planta.

摘要

香叶基二磷酸(GPP)是许多单萜烯末端产物的前体,在质体中由二甲基烯丙基二磷酸和异戊烯基二磷酸(IPP)缩合合成,该反应由同源二聚体或异源二聚体 GPP 合酶(GPPS)催化。在异源二聚体酶中,非催化的小亚基(GPPS.SSU)决定催化大亚基的产物特异性,该大亚基可能是活性牻牛儿基牻牛儿基二磷酸合酶(GGPPS)或无活性的 GGPPS 样蛋白。在这里,我们表明,金鱼草(Antirrhinum majus)GPPS.SSU 在烟草(Nicotiana tabacum)植物中的表达增加了叶片和花朵中的总 GPPS 活性和单萜烯的排放,表明引入的无催化活性的 GPPS.SSU 找到了内源性大亚基伙伴,并在体内形成了活性的金鱼草/烟草 GPPS。双分子荧光互补和对单个和杂交蛋白的体外酶分析表明,烟草 EST 数据库中的四个 GGPPS 样候选物中的两个编码真正的 GGPPS,它们可以与金鱼草 GPPS.SSU 相互作用,并在质体中形成功能性 GPPS 酶。在转基因植物中形成嵌合 GPPS 也导致叶片黄化、增加光敏感性和矮化,因为叶绿素、类胡萝卜素和赤霉素的水平降低。此外,这些转基因植物的释放的倍半萜烯减少,表明异戊烯基中间产物从质体输出到细胞质的减少。这些结果提供了遗传证据,表明 GPPS.SSU 改变了系统发育上遥远的 GGPPS 的链长特异性,并可以调节体内 GPP 和 GGPP 合成之间的 IPP 通量分布。

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