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Identification of iridoid glucoside transporters in Catharanthus roseus

机译:长春花中环烯醚萜糖苷转运蛋白的鉴定

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摘要

Monoterpenoid indole alkaloids (MIAs) are plant defense compounds and high-value pharmaceuticals. Biosynthesis of the universal MIA precursor, secologanin, is organized between internal phloem-associated parenchyma (IPAP) and epidermis cells. Transporters for intercellular transport of proposed mobile pathway intermediates have remained elusive. Screening of an Arabidopsis thaliana transporter library expressed in Xenopus oocytes identified AtNPF2.9 as a putative iridoid glucoside importer. Eight orthologs were identified in Catharanthus roseus, of which three, CrNPF2.4, CrNPF2.5 and CrNPF2.6, were capable of transporting the iridoid glucosides 7-deoxyloganic acid, loganic acid, loganin and secologanin into oocytes. Based on enzyme expression data and transporter specificity, we propose that several enzymes of the biosynthetic pathway are present in both IPAP and epidermis cells, and that the three transporters are responsible for transporting not only loganic acid, as previously proposed, but multiple intermediates. Identification of the iridoid glucoside-transporting CrNPFs is an important step toward understanding the complex orchestration of the seco-iridioid pathway.
机译:单萜类吲哚生物碱(MIA)是植物防御化合物和高价值药物。通用韧皮部前体secologanin的生物合成在内部韧皮部相关薄壁组织(IPAP)和表皮细胞之间进行组织。拟议的移动途径中间体的细胞间运输转运蛋白仍然难以捉摸。在非洲爪蟾卵母细胞中表达的拟南芥转运蛋白文库的筛选确定了AtNPF2.9是假定的虹彩状糖苷导入剂。在长春花中鉴定出八个直系同源物,其中三个CrNPF2.4,CrNPF2.5和CrNPF2.6能够将虹彩的7-脱氧原糖酸,loganic酸,loganin和secologanin转运到卵母细胞中。基于酶的表达数据和转运蛋白的特异性,我们建议IPAP和表皮细胞中都存在几种生物合成途径的酶,并且这三种转运蛋白不仅负责运输先前提出的loganic acid,还负责多种中间体。识别环烯醚酮类糖苷的CrNPFs是迈向理解类脂-类二糖苷途径复杂过程的重要一步。

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