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Tubulin acetylation accompanies autophagy development induced by different abiotic stimuli in Arabidopsis thaliana Arabidopsis thaliana

机译:管蛋白乙酰化伴随着由拟南芥拟南芥拟南芥拟南芥的自噬发育

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Abstract Microtubules (MTs) play an important role in the regulation of autophagy development in yeast and animal as well as in plant cells. MTs participate in maturation and traffic of autophagosomes through their dynamic state changes and post‐translational modifications of tubulin, namely acetylation. We subjected Arabidopsis thaliana seedlings to metabolic‐, salt‐, osmotic stresses as well as irradiation of ultraviolet B and investigated the involvement of plant MTs in the development of stress‐induced autophagy via tubulin acetylation. For this purpose Arabidopsis thaliana line expressing autophagy‐related protein 8?h (atg8h)‐GFP was generated to investigate autophagy, applying the level of free GFP as an indicator of autophagy development. Using autophagosome confocal imaging and Western blot analysis of Atg8 post‐translational lipidation and synchronous GFP release it was shown that all examined stressful stimuli led to pronounced development of autophagy, particularly in different root tissues. Moreover, autophagy development was accompanied by α‐tubulin acetylation under all stressful conditions. Presented data indicate the possible role of the post‐translational acetylation of α‐tubulin in the mediation of plant stress‐induced autophagy.
机译:抽象的微管(MTS)在酵母和动物以及植物细胞的调节中发挥着重要作用。 MTS通过其动态状态变化和微管蛋白的翻译后修饰参与自噬物的成熟和流量,即乙酰化。我们将拟南芥植物幼苗与代谢,盐,渗透胁迫以及紫外线辐射进行,并研究了植物MTS在通过管蛋白乙酰化产生应激诱导的自噬的发展。为此目的,拟南芥拟南芥表达与自噬相关的蛋白质8?H(ATG8H)-GFP进行调查,以调查自噬,将免费GFP水平应用为自噬发展的指标。使用ATG8后翻译脂肪和同步GFP释放的自噬核糖体共聚焦成像和Western印迹分析显示,所有检查的压力刺激导致自噬发生,特别是在不同的根组织中。此外,在所有压力条件下,自噬发育伴随着α-肾上腺素乙酰化。呈现的数据表明α-微管蛋白在植物应激诱导的自噬中的α-微管蛋白的后翻透乙酰化的可能作用。

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