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Fluorescent reporter proteins for the tonoplast and the vacuolar lumen identify a single vacuolar compartment in Arabidopsis cells(1[W])

机译:液泡膜和液泡腔的荧光报告蛋白在拟南芥细胞中鉴定出单个液泡区室(1 [W])

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We generated fusions between three Arabidopsis (Arabidopsis thaliana) tonoplast intrinsic proteins (TIPs; alpha-, gamma-, and delta-TIP) and yellow fluorescent protein (YFP). We also produced soluble reporters consisting of the monomeric red fluorescent protein (RFP) and either the C-terminal vacuolar sorting signal of phaseolin or the sequence-specific sorting signal of proricin. In transgenic Arabidopsis leaves, mature roots, and root tips, all TIP fusions localized to the tonoplast of the central vacuole and both of the lumenal RFP reporters were found within TIP-delimited vacuoles. In embryos from developing, mature, and germinating seeds, all three TIPs localized to the tonoplast of protein storage vacuoles. To determine the temporal TIP expression patterns and to rule out mistargeting due to overexpression, we generated plants expressing YFP fused to the complete genomic sequences of the three TIP isoforms. In transgenic Arabidopsis, gamma-TIP expression was limited to vegetative tissues, but specifically excluded from root tips, whereas alpha-TIP was exclusively expressed during seed maturation. delta-TIP was expressed in vegetative tissues, but not root tips, at a later stage than delta-TIP. Our findings indicate that, in the Arabidopsis tissues analyzed, two different vacuolar sorting signals target soluble proteins to a single vacuolar location. Moreover, TIP isoform distribution is tissue and development specific, rather than organelle specific.
机译:我们生成了三个拟南芥(拟南芥)液泡膜内在蛋白(TIP;α-,γ-和δ-TIP)和黄色荧光蛋白(YFP)之间的融合体。我们还生产了由单体红色荧光蛋白(RFP)和菜豆蛋白的C端液泡分选信号或proricin的序列特异性分选信号组成的可溶性报告分子。在转基因拟南芥的叶片,成熟的根和根尖中,所有位于TIP分隔液泡中的TIP融合都位于中央液泡的液泡膜和两个管腔RFP报告基因中。在发育,成熟和发芽种子的胚中,所有三个TIP均位于蛋白质储存液泡的液泡膜中。为了确定暂时性TIP表达模式并排除由于过度表达引起的误靶,我们生成了表达YFP的植物,这些植物融合了三种TIP同工型的完整基因组序列。在转基因拟南芥中,γ-TIP表达仅限于营养组织,但根尖特别排除,而α-TIP仅在种子成熟过程中表达。 δ-TIP在营养组织中表达,但比δ-TIP晚些时候在根尖不表达。我们的发现表明,在分析的拟南芥组织中,两个不同的液泡分类信号将可溶蛋白靶向单个液泡位置。而且,TIP同工型分布是组织和发育特异性的,而不是细胞器特异性的。

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