The John Innes Centre, Department of Biological Chemistry, Norwich Research Park, Norwich NR4 7UK, UK.
DynaMo Centre, Department of Plant and Environmental Sciences, Faculty of Science, University of Copenhagen, 40 Thorvaldsensvej, DK-1871 Frederiksberg C, Denmark.
Nat Plants. 2017 Jan 13;3:16208. doi: 10.1038/nplants.2016.208.
Plants sequester intermediates of metabolic pathways into different cellular compartments, but the mechanisms by which these molecules are transported remain poorly understood. Monoterpene indole alkaloids, a class of specialized metabolites that includes the anticancer agent vincristine, antimalarial quinine and neurotoxin strychnine, are synthesized in several different cellular locations. However, the transporters that control the movement of these biosynthetic intermediates within cellular compartments have not been discovered. Here we present the discovery of a tonoplast localized nitrate/peptide family (NPF) transporter from Catharanthus roseus, CrNPF2.9, that exports strictosidine, the central intermediate of this pathway, into the cytosol from the vacuole. This discovery highlights the role that intracellular localization plays in specialized metabolism, and sets the stage for understanding and controlling the central branch point of this pharmacologically important group of compounds.
植物将代谢途径的中间产物隔离在不同的细胞隔室中,但这些分子的运输机制仍知之甚少。单萜吲哚生物碱是一类特殊的代谢产物,包括抗癌药物长春新碱、抗疟药奎宁和神经毒素士的宁,它们在几个不同的细胞位置合成。然而,控制这些生物合成中间产物在细胞隔室中运动的转运蛋白尚未被发现。在这里,我们发现了长春花中的液泡膜定位的硝酸盐/肽家族(NPF)转运蛋白 CrNPF2.9,它将该途径的中心中间产物Strictosidine 从液泡输出到细胞质中。这一发现强调了细胞内定位在特殊代谢中的作用,并为理解和控制这组具有重要药理学意义的化合物的中心分支点奠定了基础。