首页> 外文期刊>Molecular Plant >H2O2-activated up-regulation of glutathione in Arabidopsis involves induction of genes encoding enzymes involved in cysteine synthesis in the chloroplast. (Special Issue: Redox biology I.)
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H2O2-activated up-regulation of glutathione in Arabidopsis involves induction of genes encoding enzymes involved in cysteine synthesis in the chloroplast. (Special Issue: Redox biology I.)

机译:H 2 O 2 激活拟南芥中谷胱甘肽的上调涉及诱导编码参与叶绿体中半胱氨酸合成的酶的基因。 (特刊:氧化还原生物学I。)

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Glutathione is a key player in cellular redox homeostasis and, therefore, in the response to H2O2, but the factors regulating oxidation-activated glutathione synthesis are still unclear. We investigated H2O2-induced glutathione synthesis in a conditional Arabidopsis catalase-deficient mutant (cat2). Plants were grown from seed at elevated CO2 for 5 weeks, then transferred to air in either short-day or long-day conditions. Compared to cat2 at elevated CO2 or wild-type plants in any condition, transfer of cat2 to air in both photoperiods caused measurable oxidation of the leaf glutathione pool within hours. Oxidation continued on subsequent days and was accompanied by accumulation of glutathione. This effect was stronger in cat2 transferred to air in short days, and was not linked to appreciable increases in the extractable activities of or transcripts encoding enzymes involved in the committed pathway of glutathione synthesis. In contrast, it was accompanied by increases in serine, O-acetylserine, and cysteine. These changes in metabolites were accompanied by induction of genes encoding adenosine phosphosulfate reductase (APR), particularly APR3, as well as a specific serine acetyltransferase gene (SAT2.1) encoding a chloroplastic SAT. Marked induction of these genes was only observed in cat2 transferred to air in short-day conditions, where cysteine and glutathione accumulation was most dramatic. Unlike other SAT genes, which showed negligible induction in cat2, the relative abundance of APR and SAT2.1 transcripts was closely correlated with marker transcripts for H2O2 signaling. Together, the data underline the importance of cysteine synthesis in oxidant-induced up-regulation of glutathione synthesis and suggest that the chloroplast makes an important contribution to cysteine production under these circumstances.
机译:谷胱甘肽是细胞氧化还原稳态的关键参与者,因此,在对H 2 O 2 的反应中,但是调节氧化激活的谷胱甘肽合成的因素仍不清楚。我们研究了条件拟南芥过氧化氢酶缺陷型突变体( cat2 )中H 2 O 2 诱导的谷胱甘肽合成。将植物从高浓度CO 2 的种子中生长5周,然后在短日或长日条件下转移到空气中。与在任何条件下升高CO 2 或野生型植物中的 cat2 相比,两种光周期中 cat2 转移到空气中均导致可测量的氧化。数小时内叶片谷胱甘肽池。随后几天继续氧化,并伴有谷胱甘肽的积累。在短时间内转移到空气中的 cat2 中,这种作用更强,并且与谷胱甘肽合成的固定途径中涉及的酶的可提取活性或转录本的可观增加无关。相反,它伴随着丝氨酸, O -乙酰基丝氨酸和半胱氨酸的增加。这些代谢物的变化伴随着编码磷酸腺苷磷酸还原酶(APR),尤其是 APR3 的基因的诱导,以及编码Aβ3的特定丝氨酸乙酰基转移酶基因( 2.1)的诱导。叶绿素SAT。仅在短时条件下转移到空气中的 cat2 中观察到了这些基因的明显诱导,其中半胱氨酸和谷胱甘肽的积累最为剧烈。与其他 SAT 基因在 cat2 中的诱导作用可忽略不计, APR 和 SAT2.1 转录本的相对丰度与H 2 O 2 信号的转录物紧密相关。总之,这些数据强调了半胱氨酸合成在氧化剂诱导的谷胱甘肽合成上调中的重要性,并表明在这些情况下,叶绿体对半胱氨酸的产生做出了重要贡献。

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