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首页> 外文期刊>BMC Plant Biology >The effect of Translationally Controlled Tumour Protein (TCTP) on programmed cell death in plants
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The effect of Translationally Controlled Tumour Protein (TCTP) on programmed cell death in plants

机译:翻译控制肿瘤蛋白(TCTP)对植物程序性细胞死亡的影响

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Background Translationally controlled tumour protein (TCTP), a well known protein of the animal kingdom, was shown to be a Ca2+-binding protein with important functions in many different cellular processes (e.g. protection against stress and apoptosis, cell growth, cell cycle progression, and microtubule organization). However, only little is known about TCTP in plants. Transcript and protein levels of plant TCTPs were shown to be altered by various stress conditions (e.g. cold, salt, draught, aluminium, and pathogen infection), and Arabidopsis thaliana TCTP (AtTCTP) was described as an important regulator of growth. The aim of this study was to further characterize plant TCTP relating to one of its major functions in animals: the protection against cell death. Results We used two different activators of programmed cell death (PCD) in plants: the mammalian pro-apoptotic protein BAX and tunicamycin, an inhibitor of glycosylation and trigger of unfolded protein response (UPR). Over-expression of AtTCTP significantly decreased cell death in tobacco leaf discs in both studies. A 45Ca overlay assay showed AtTCTP to be a Ca2+-binding protein and localization experiments revealed cytosolic distribution of AtTCTP-GFP in Arabidopsis seedlings. Conclusions Our study showed cytoprotective effects of plant TCTP for the first time. Furthermore, we showed the ability of AtTCTP to bind to Ca2+ and its cytosolic distribution within the cell. If these results are combined, two putative modes of action can be assumed: 1) AtTCTP acts as Ca2+ sequester, preventing PCD by reducing cytosolic Ca2+ levels as described for animals. 2) AtTCTP could directly or indirectly interact with other cytosolic or membrane-bound proteins of the cell death machinery, thereby inhibiting cell death progression. As no homologous proteins of the anti-apoptotic machinery of animals were found in plants, and functional homologues still remain to be elucidated, future work will provide more insight.
机译:背景翻译控制的肿瘤蛋白(TCTP)是动物界的一种众所周知的蛋白,被证明是一种Ca 2 + 结合蛋白,在许多不同的细胞过程中具有重要功能(例如,抗应激和抗应激作用)细胞凋亡,细胞生长,细胞周期进程和微管组织)。但是,对于植物中的TCTP知之甚少。已显示植物TCTP的转录本和蛋白质水平会因各种胁迫条件(例如感冒,盐,吃水,铝和病原体感染)而改变,拟南芥TCTP(AtTCTP)被描述为重要的生长调节剂。这项研究的目的是进一步表征与植物TCTP有关的动物主要功能之一:防止细胞死亡。结果我们在植物中使用了两种不同的程序性细胞死亡(PCD)激活剂:哺乳动物促凋亡蛋白BAX和衣霉素,糖基化抑制剂和未折叠蛋白应答(UPR)触发剂。在两项研究中,AtTCTP的过表达均显着降低了烟叶圆盘中的细胞死亡。 45 Ca覆盖分析表明AtTCTP是一种Ca 2 + 结合蛋白,定位实验表明AtTCTP-GFP在拟南芥幼苗中的胞质分布。结论我们的研究首次显示了植物TCTP的细胞保护作用。此外,我们显示了AtTCTP结合Ca 2 + 的能力及其在细胞内的胞质分布。如果将这些结果结合起来,则可以假设两种假定的作用方式:1)AtTCTP充当Ca 2 + 螯合剂,通过降低胞质中Ca 2 + 的水平来预防PCD对于动物。 2)AtTCTP可以与细胞死亡机制的其他胞质或膜结合蛋白直接或间接相互作用,从而抑制细胞死亡进程。由于在植物中未发现动物抗凋亡机制的同源蛋白,而功能同源物仍有待阐明,因此未来的工作将提供更多的见识。

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