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Low glutathione regulates gene expression and the redox potentials of the nucleus and cytosol in Arabidopsis thaliana

机译:低谷胱甘肽调节拟南芥中的基因表达以及细胞核和细胞质的氧化还原电位

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Reduced glutathione (GSH) is considered to exert a strong influence on cellular redox homeostasis and to regulate gene expression, but these processes remain poorly characterized. Severe GSH depletion specifically inhibited root meristem development, while low root GSH levels decreased lateral root densities. The redox potential of the nucleus and cytosol of Arabidopsis thaliana roots determined using roGFP probes was between -300 and -320mV. Growth in the presence of the GSH-synthesis inhibitor buthionine sulfoximine (BSO) increased the nuclear and cytosolic redox potentials to approximately -260mV. GSH-responsive genes including transcription factors (SPATULA, MYB15, MYB75), proteins involved in cell division, redox regulation (glutaredoxinS17, thioredoxins, ACHT5 and TH8) and auxin signalling (HECATE), were identified in the GSH-deficient root meristemless 1-1 (rml1-1) mutant, and in other GSH-synthesis mutants (rax1-1, cad2-1, pad2-1) as well as in the wild type following the addition of BSO. Inhibition of auxin transport had no effect on organ GSH levels, but exogenous auxin decreased the root GSH pool. We conclude that GSH depletion significantly increases the redox potentials of the nucleus and cytosol, and causes arrest of the cell cycle in roots but not shoots, with accompanying transcript changes linked to altered hormone responses, but not oxidative stress.
机译:还原型谷胱甘肽(GSH)被认为对细胞氧化还原稳态具有重要影响,并调节基因表达,但这些过程的特征仍然较差。严重的谷胱甘肽耗竭特别抑制了根分生组织的发育,而低的根谷胱甘肽水平降低了侧根的密度。使用roGFP探针测定的拟南芥根核和胞质溶胶的氧化还原电位在-300至-320mV之间。在GSH合成抑制剂丁硫氨酸亚砜(BSO)的存在下生长,可使核和胞质氧化还原电势增至约-260mV。 GSH响应基因包括转录因子(SPATULA,MYB15,MYB75),参与细胞分裂的蛋白,氧化还原调节(glutaredoxinS17,硫氧还蛋白,ACTH5和TH8)和生长素信号传导(HECATE),已在GSH缺乏的根分生组织中被鉴定为1- 1(rml1-1)突变体,以及其他GSH合成突变体(rax1-1,cad2-1,pad2-1)以及加入BSO后的野生型。生长素运输抑制对器官GSH水平没有影响,但外源生长素降低了根GSH库。我们得出的结论是,谷胱甘肽耗竭明显增加了细胞核和细胞质的氧化还原电位,并导致了根部细胞周期的停滞,但没有芽,伴随的转录物变化与激素反应的改变有关,但与氧化应激无关。

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