首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Antagonistic control of oxidative stress-induced cell death in Arabidopsis by two related, plant-specific zinc finger proteins.
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Antagonistic control of oxidative stress-induced cell death in Arabidopsis by two related, plant-specific zinc finger proteins.

机译:拮抗拟南芥中两种相关的植物特异性锌指蛋白对氧化应激诱导的细胞死亡的控制。

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摘要

The most familiar form of plant programmed cell death is the hypersensitive response (HR) associated with successful plant immune responses. HR is preceded by an oxidative burst and the generation of both reactive oxygen intermediates (ROI) and NO. The Arabidopsis LSD1 gene encodes a negative regulator of plant programmed cell death that meets several criteria for a regulator of processes relevant to ROI management during pathogen responses. Here we demonstrate that a highly conserved LSD1 paralogue, LOL1, acts as a positive regulator of cell death. Manipulation of LOL1 expression alters both the superoxide-dependent, runaway cell death phenotype of lsd1 plants and the normal HR. We also show that LSD1 and LOL1 have antagonistic effects on copper-zinc superoxide dismutase accumulation, consistent with functions in cell death control via maintenance of ROI homeostasis.
机译:植物程序性细胞死亡的最常见形式是与成功的植物免疫反应相关的超敏反应(HR)。 HR之前发生氧化性爆发,并同时生成活性氧中间体(ROI)和NO。拟南芥LSD1基因编码的植物程序性细胞死亡的负调节器,满足病原体反应期间与ROI管理相关的过程的调节器的几个标准。在这里,我们证明了高度保守的LSD1旁系同源物LOL1作为细胞死亡的正向调节剂。 LOL1表达的操纵会改变lsd1植物的超氧化物依赖性失控细胞死亡表型和正常HR。我们还显示,LSD1和LOL1对铜-锌超氧化物歧化酶积累具有拮抗作用,与通过维持ROI稳态在细胞死亡控制中的功能一致。

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