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自由基诱导的细胞死亡蛋白 1(RCD1)支持叶绿体抗氧化酶基因的转录激活。

The radical induced cell death protein 1 (RCD1) supports transcriptional activation of genes for chloroplast antioxidant enzymes.

机构信息

Plant Science, Heinrich-Heine-University Düsseldorf Düsseldorf, Germany.

Plant Physiology, Freie Universität Berlin Berlin, Germany.

出版信息

Front Plant Sci. 2014 Sep 23;5:475. doi: 10.3389/fpls.2014.00475. eCollection 2014.

Abstract

The rimb1 (redox imbalanced 1) mutation was mapped to the RCD1 locus (radical-induced cell death 1; At1g32230) demonstrating that a major factor involved in redox-regulation genes for chloroplast antioxidant enzymes and protection against photooxidative stress, RIMB1, is identical to the regulator of disease response reactions and cell death, RCD1. Discovering this link let to our investigation of its regulatory mechanism. We show in yeast that RCD1 can physically interact with the transcription factor Rap2.4a which provides redox-sensitivity to nuclear expression of genes for chloroplast antioxidant enzymes. In the rimb1 (rcd1-6) mutant, a single nucleotide exchange results in a truncated RCD1 protein lacking the transcription factor binding site. Protein-protein interaction between full-length RCD1 and Rap2.4a is supported by H2O2, but not sensitive to the antioxidants dithiotreitol and ascorbate. In combination with transcript abundance analysis in Arabidopsis, it is concluded that RCD1 stabilizes the Rap2.4-dependent redox-regulation of the genes encoding chloroplast antioxidant enzymes in a widely redox-independent manner. Over the years, rcd1-mutant alleles have been described to develop symptoms like chlorosis, lesions along the leaf rims and in the mesophyll and (secondary) induction of extra- and intra-plastidic antioxidant defense mechanisms. All these rcd1 mutant characteristics were observed in rcd1-6 to succeed low activation of the chloroplast antioxidant system and glutathione biosynthesis. We conclude that RCD1 protects plant cells from running into reactive oxygen species (ROS)-triggered programs, such as cell death and activation of pathogen-responsive genes (PR genes) and extra-plastidic antioxidant enzymes, by supporting the induction of the chloroplast antioxidant system.

摘要

rimb1(氧化失衡 1)突变被定位到 RCD1 基因座(自由基诱导细胞死亡 1;At1g32230),表明参与叶绿体抗氧化酶和光氧化应激保护的氧化还原调节基因的一个主要因素,RIMB1,与疾病反应调节因子和细胞死亡的 RCD1 相同。发现这一联系使我们对其调节机制进行了研究。我们在酵母中表明,RCD1 可以与转录因子 Rap2.4a 发生物理相互作用,该因子为核表达叶绿体抗氧化酶基因提供氧化还原敏感性。在 rimb1(rcd1-6)突变体中,单个核苷酸交换导致截短的 RCD1 蛋白缺失转录因子结合位点。全长 RCD1 和 Rap2.4a 之间的蛋白-蛋白相互作用得到 H2O2 的支持,但对抗氧化剂 DTT 和抗坏血酸不敏感。结合拟南芥的转录丰度分析,得出结论,RCD1 以广泛的氧化还原非依赖性方式稳定 Rap2.4 依赖的叶绿体抗氧化酶基因的氧化还原调节。多年来,已经描述了 rcd1 突变等位基因表现出类似于叶绿素缺失、叶片边缘和叶肉中的损伤以及(次级)诱导质外和质内抗氧化防御机制等症状。在 rcd1-6 中观察到所有这些 rcd1 突变特征,以成功地激活叶绿体抗氧化系统和谷胱甘肽生物合成。我们得出的结论是,RCD1 通过支持叶绿体抗氧化系统的诱导,防止植物细胞陷入活性氧(ROS)触发的程序,如细胞死亡和激活病原体响应基因(PR 基因)和质外抗氧化酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/436e/4172000/8fa8a805a5ee/fpls-05-00475-g0001.jpg

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