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Vacuolar transport of nicotine is mediated by a multidrug and toxic compound extrusion (MATE) transporter in Nicotiana tabacum

机译:尼古丁的蒸气运输是由烟草中的多药和有毒化合物挤压(MATE)转运蛋白介导的。

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摘要

Alkaloids play a key role in plant defense mechanisms against pathogens and herbivores, but the plants themselves need to cope with their toxicity as well. The major alkaloid of the Nicotiana species, nicotine, is translocated via xylem transport from the root tissues where it is biosynthesized to the accumulation sites, the vacuoles of leaves. To unravel the molecular mechanisms behind this membrane transport, we characterized one transporter, the tobacco (Nicotiana tabacum) jasmonate-inducible alkaloid transporter 1 (Nt-JAT1), whose expression was coregulated with that of nicotine biosynthetic genes in methyl jasmonate-treated tobacco cells. Nt-JAT1, belonging to the family of multidrug and toxic compound extrusion transporters, was expressed in roots, stems, and leaves, and localized in the tonoplast of leaf cells. When produced in yeast cells, Nt-JAT1 occurred mainly in the plasma membrane and showed nicotine efflux activity. Biochemical analysis with proteoliposomes reconstituted with purified Nt-JAT1 and bacterial F0F1-ATPase revealed that Nt-JAT1 functioned as a proton antiporter and recognized endogenous tobacco alkaloids, such as nicotine and anabasine, and other alkaloids, such as hyoscyamine and berberine, but not flavonoids. These findings strongly suggest that Nt-JAT1 plays an important role in the nicotine translocation by acting as a secondary transporter responsible for unloading of alkaloids in the aerial parts and deposition in the vacuoles.
机译:生物碱在植物对抗病原体和食草动物的防御机制中起着关键作用,但是植物本身也需要应对其毒性。烟草的主要生物碱,尼古丁,通过木质部转运而从生物合成的根部组织转移到积累部位,即叶的液泡。为了揭示这种膜转运的分子机制,我们鉴定了一种转运蛋白,即烟草(烟草)茉莉酸诱导的生物碱转运蛋白1(Nt-JAT1),其表达与茉莉酸甲酯处理过的烟草细胞中的尼古丁生物合成基因的表达紧密相关。 。 Nt-JAT1属于多药和有毒化合物挤出转运蛋白家族,在根,茎和叶中表达,并位于叶细胞的液泡膜中。当在酵母细胞中产生时,Nt-JAT1主要出现在质膜中,并表现出尼古丁外排活性。用纯化的Nt-JAT1和细菌F0F1-ATPase重构的蛋白脂质体的生化分析表明,Nt-JAT1充当质子反转运蛋白并识别内源性烟草生物碱,例如尼古丁和金刚烷胺,以及其他生物碱,例如扁桃碱和小ber碱,但不是类黄酮。 。这些发现强烈表明,Nt-JAT1在尼古丁的转运中起着重要的作用,它起着次级转运子的作用,负责空中部位生物碱的卸载和液泡中的沉积。

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