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首页> 外文期刊>Planta: An International Journal of Plant Biology >Multi-targeted trehalose-6-phosphate phosphatase I harbors a novel peroxisomal targeting signal 1 and is essential for flowering and development
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Multi-targeted trehalose-6-phosphate phosphatase I harbors a novel peroxisomal targeting signal 1 and is essential for flowering and development

机译:多针对海藻糖-6-磷酸磷酸酶I Harbors一种新的过氧缩体靶向信号1,对于开花和开发至关重要

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Main conclusion This work reveals information about new peroxisomal targeting signals type 1 and identifies trehalose-6-phosphate phosphatase I as multitargeted and is implicated in plant development, reproduction, and stress response. A putative, non-canonical peroxisomal targeting signal type 1 (PTS1) Pro-Arg-Met > was identified in the extreme C-terminus of trehalose-6-phosphate phosphatase (TPP)I. TPP catalyzes the final step of trehalose synthesis, and the enzyme was previously characterized to be nuclear only (Krasensky et al. in Antioxid Redox Signal 21(9):1289-1304, 2014). Here we show that the TPPI C-terminal decapeptide ending with Pro-Arg-Met > or Pro-Lys-Met > can indeed function as a PTS1. Upon transient expression in two plant expression systems, the free C- or N-terminal end led to the full-length TPPI targeting to peroxisomes and plastids, respectively. The nucleus and nucleolus targeting of the full-length TPPI was observed in both cases. The homozygous T-DNA insertion line of TPPI showed a pleiotropic phenotype including smaller leaves, shorter roots, delayed flowering, hypersensitivity to salt, and a sucrose dependent seedling development. Our results identify novel PTS1s, and TPPI as a protein multi-targeted to peroxisomes, plastids, nucleus, and nucleolus. Altogether our findings implicate an essential role for TPPI in development, reproduction, and cell signaling.
机译:主要结论这项工作揭示了有关新过氧酶靶标靶向信号类型1的信息,并将海藻糖-6-磷酸磷酸酶I识别为多目标,并涉及植物发育,繁殖和应力反应。在海藻糖-6-磷酸磷酸酶(TPP)I的极端C-末端中鉴定出推定的非规范过氧杀菌型靶向信号类型1(PTS1)Pro-Arg-Met>。 TPP催化海藻糖合成的最终步骤,并先前表征仅是核(Krasensky等人。在抗氧化氧化还原信号21(9)中:1289-1304,2014)。在这里,我们显示以Pro-Arg-Met>或Pro-Lys-Met>结尾的TPPI C末端抑制肽可以确定为PTS1。在两种植物表达系统中的瞬时表达后,自由的C-或N-末端端部分别导致靶向过氧血清和塑性的全长TPPI。两种情况下观察到全长TPPI的核和核靶向靶向。 TPPI的纯合T-DNA插入管线显示出一种具有较小叶片,较短的叶片,延迟开花,对盐的过敏,以及蔗糖依赖性幼苗发育的肺炎表型。我们的结果鉴定了新型PTS1s,以及TPPI作为蛋白质多针对过氧血清,塑性,核和核仁。我们的研究结果均无针对TPPI在开发,再生产和小区信令中的基本作用。

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