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Arabidopsis RCD1 coordinates chloroplast and mitochondrial functions through interaction with ANAC transcription factors

机译:拟南芥RCD1通过与ANAC转录因子相互作用来协调叶绿体和线粒体功能

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摘要

Reactive oxygen species (ROS)-dependent signaling pathways from chloroplasts and mitochondria merge at the nuclear protein RADICAL-INDUCED CELL DEATH1 (RCD1). RCD1 interacts in vivo and suppresses the activity of the transcription factors ANAC013 and ANAC017, which mediate a ROS-related retrograde signal originating from mitochondrial complex III. Inactivation of RCD1 leads to increased expression of mitochondrial dysfunction stimulon (MDS) genes regulated by ANAC013 and ANAC017. Accumulating MDS gene products, including alternative oxidases (AOXs), affect redox status of the chloroplasts, leading to changes in chloroplast ROS processing and increased protection of photosynthetic apparatus. ROS alter the abundance, thiol redox state and oligomerization of the RCD1 protein in vivo, providing feedback control on its function. RCD1-dependent regulation is linked to chloroplast signaling by 3'-phosphoadenosine 5'-phosphate (PAP). Thus, RCD1 integrates organellar signaling from chloroplasts and mitochondria to establish transcriptional control over the metabolic processes in both organelles.
机译:来自叶绿体和线粒体的依赖活性氧(ROS)的信号通路在核蛋白自由基诱导的细胞死亡1(RCD1)处合并。 RCD1在体内相互作用并抑制转录因子ANAC013和ANAC017的活性,后者介导源自线粒体复合体III的ROS相关逆行信号。 RCD1的失活导致由ANAC013和ANAC017调节的线粒体功能障碍刺激物(MDS)基因的表达增加。包括替代氧化酶(AOX)在内的MDS基因产物的积累会影响叶绿体的氧化还原状态,从而导致叶绿体ROS加工过程发生变化并增强对光合作用装置的保护。 ROS在体内改变RCD1蛋白的丰度,硫醇氧化还原状态和寡聚,从而对其功能提供反馈控制。 RCD1依赖性调节通过3'-磷酸腺苷5'-磷酸(PAP)与叶绿体信号传导相关。因此,RCD1整合了来自叶绿体和线粒体的细胞器信号传导,以建立对两个细胞器中代谢过程的转录控制。

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