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首页> 外文期刊>Frontiers in Plant Science >The putative Cationic Amino Acid Transporter 9 is targeted to vesicles and may be involved in plant amino acid homeostasis
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The putative Cationic Amino Acid Transporter 9 is targeted to vesicles and may be involved in plant amino acid homeostasis

机译:推定的阳离子氨基酸转运蛋白9靶向囊泡,并且可以参与植物氨基酸稳态

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Amino acids are major primary metabolites. Their uptake, translocation, compartmentation, and re-mobilization require a diverse set of cellular transporters. Here, the broadly expressed gene product of CATIONIC AMINO ACID TRANSPORTER 9 ( CAT9 ) was identified as mainly localized to vesicular membranes that are involved in vacuolar trafficking, including those of the trans -Golgi network. In order to probe whether and how these compartments are involved in amino acid homeostasis, a loss-of-function cat9-1 mutant and ectopic over-expressor plants were isolated. Under restricted nitrogen supply in soil, cat9-1 showed a chlorotic phenotype, which was reversed in the over-expressors. The total soluble amino acid pools were affected in the mutants, but this was only significant under poor nitrogen supply. Upon nitrogen starvation, the soluble amino acid leaf pools were lower in the over-expressor, compared with cat9-1. Over-expression generally affected total soluble amino acid concentrations, slightly delayed development, and finally improved the survival upon severe nitrogen starvation. The results potentially identify a novel function of vesicular amino acid transport mediated by CAT9 in the cellular nitrogen-dependent amino acid homeostasis.
机译:氨基酸是主要的主要代谢物。他们的吸收,易位,隔间和重新动员需要一种多样化的细胞转运蛋白。这里,鉴定阳离子氨基酸转运蛋白9(CAT9)的广泛表达基因产物,其主要是局部局限于粘性膜,其参与真空贩运,包括TRASS-GOLGI网络。为了探测这些隔室是否涉及氨基酸稳态,分离出函数丧失的CAT9-1突变体和异位过度脑膜植物。在土壤中的限制氮气供应下,CAT9-1显示氯化表型,其在过度表现体中逆转。在突变体中受到可溶性氨基酸池的影响,但这仅在氮供应差的情况下显着。与CAT9-1相比,在氮饥饿后,可溶性氨基酸叶池较低。过表达通常影响总可溶性氨基酸浓度,略微延迟发育,最终改善了严重氮饥饿后的存活。结果潜在地鉴定CAT9在细胞氮依赖性氨基酸稳态中介导的囊泡氨基酸输送的新功能。

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