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首页> 外文期刊>The Plant Cell >Arabidopsis SAMT1 Defines a Plastid Transporter Regulating Plastid Biogenesis and Plant Development
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Arabidopsis SAMT1 Defines a Plastid Transporter Regulating Plastid Biogenesis and Plant Development

机译:拟南芥SAMT1定义了调节质体生物发生和植物发育的质体转运蛋白。

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摘要

S-Adenosylmethionine (SAM) is formed exclusively in the cytosol but plays a major role in plastids; SAM can either act as a methyl donor for the biogenesis of small molecules such as prenyllipids and macromolecules or as a regulator of the synthesis of aspartate-derived amino acids. Because the biosynthesis of SAM is restricted to the cytosol, plastids require a SAM importer. However, this transporter has not yet been identified. Here, we report the molecular and functional characterization of an Arabidopsis thaliana gene designated SAM TRANSPORTER1 (SAMT1), which encodes a plastid metabolite transporter required for the import of SAM from the cytosol. Recombinant SAMT1 produced in yeast cells, when reconstituted into liposomes, mediated the counter-exchange of SAM with SAM and with S-adenosylhomocysteine, the by-product and inhibitor of transmethylation reactions using SAM. Insertional mutation in SAMT1 and virus-induced gene silencing of SAMT1 in Nicotiana benthamiana caused severe growth retardation in mutant plants. Impaired function of SAMT1 led to decreased accumulation of prenyllipids and mainly affected the chlorophyll pathway. Biochemical analysis suggests that the latter effect represents one prominent example of the multiple events triggered by undermethylation, when there is decreased SAM flux into plastids.
机译:S-腺苷甲硫氨酸(SAM)仅在细胞质中形成,但在质体中起主要作用。 SAM可以充当小分子(如异戊二烯脂质和大分子)生物合成的甲基供体,也可以充当天冬氨酸衍生氨基酸合成的调节剂。由于SAM的生物合成仅限于细胞质,因此质体需要SAM导入剂。但是,尚未确定该转运蛋白。在这里,我们报告命名为SAM TRANSPORTER1(SAMT1)的拟南芥基因的分子和功能表征,该基因编码从细胞质中导入SAM所需的质体代谢物转运蛋白。当重组为脂质体时,酵母细胞中产生的重组SAMT1介导SAM与SAM以及S-腺苷同型半胱氨酸(使用SAM的甲基化反应的副产物和抑制剂)的反向交换。本氏烟草中SAMT1的插入突变和SAMT1的病毒诱导基因沉默导致突变植物严重生长迟缓。 SAMT1的功能受损导致异戊二烯脂的积累减少,并且主要影响叶绿素途径。生化分析表明,当SAM进入质体的流量减少时,后一种效应代表了甲基化不足引发的多个事件的一个突出例子。

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