Kataya Amr R A, Elshobaky Ahmed, Heidari Behzad, Dugassa Nemie-Feyissa, Thelen Jay J, Lillo Cathrine
Centre for Organelle Research, Faculty of Science and Technology, University of Stavanger, 4036, Stavanger, Norway.
Department of Biochemistry, Christopher S. Bond Life Sciences Center, University of Missouri, Columbia, MO, USA.
Planta. 2020 Apr 18;251(5):98. doi: 10.1007/s00425-020-03389-z.
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.
这项研究揭示了有关新型1型过氧化物酶体靶向信号的信息,并确定海藻糖-6-磷酸磷酸酶I具有多靶向性,且与植物发育、繁殖和应激反应有关。在海藻糖-6-磷酸磷酸酶(TPP)I的极端C末端鉴定出一个假定的非经典1型过氧化物酶体靶向信号(PTS1)Pro-Arg-Met >。TPP催化海藻糖合成的最后一步,该酶先前被认为仅定位于细胞核(Krasensky等人,《抗氧化剂与氧化还原信号》,2014年,第21卷第9期,第1289 - 1304页)。在此我们表明,以Pro-Arg-Met >或Pro-Lys-Met >结尾的TPP I C末端十肽确实可以作为PTS1发挥作用。在两种植物表达系统中瞬时表达时,游离的C末端或N末端分别导致全长TPP I靶向过氧化物酶体和质体。在这两种情况下都观察到了全长TPP I靶向细胞核和核仁。TPP I的纯合T-DNA插入系表现出多效性表型,包括叶片变小、根变短、开花延迟、对盐超敏以及蔗糖依赖性幼苗发育。我们的结果鉴定出了新型PTS1,并确定TPP I是一种多靶向于过氧化物酶体、质体、细胞核和核仁的蛋白质。总之,我们的发现表明TPP I在发育、繁殖和细胞信号传导中起着至关重要的作用。