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赖氨酸特异性去甲基化酶1/过氧化氢酶2相分离凝聚物的氧化还原调节控制其定位和功能。

Redox regulation of LSD1/CATALASE 2 phase separation condensates controls location and functions.

作者信息

Lin Chi-Chuan, Foyer Christine H, Wright Megan, Baker Alison

机构信息

School of Molecular and Cellular Biology, Centre for Plant Sciences and Astbury Centre for Structural Molecular Biology, University of Leeds, Leeds, LS2 9JT, UK.

School of Biosciences, College of Life and Environment Sciences, University of Birmingham, Edgbaston, B15 2TT, UK.

出版信息

New Phytol. 2025 Sep;247(6):2824-2838. doi: 10.1111/nph.70374. Epub 2025 Jul 21.

Abstract

Phase separation of proteins into membraneless compartments is emerging as an important mechanism of plant developmental and stress responses. We show Arabidopsis catalase 2 (CAT2) is recruited to phase-separated condensates with LESION SIMULATING DISEASE1 (LSD1), a plant-specific regulator of programmed cell death, in a redox-dependent manner that regulates its intracellular localisation and activity. Using recombinant proteins, we showed that CAT2 and LSD1 form ternary complexes with the peroxisome import receptor PEX5. The ability of LSD1 to form phase-separated condensates is a property of zinc fingers 1 and 2. The interactions between all three proteins and the fluidity of the LSD1 condensates are redox-regulated. Using confocal microscopy, the in vivo trafficking of CAT2 to peroxisomes and the nuclei was shown to be redox-regulated, and LSD1 was shown to control CAT2 localisation in vivo. We propose a model whereby the redox-dependent differential accessibility of CAT2, PEX5 and LSD1 within condensates not only regulates CAT2 activity but also compartmentalisation between peroxisome, cytosol and nucleus. Relocation of catalase to the nucleus may provide protection to nuclear processes under conditions of biotic stress.

摘要

蛋白质相分离形成无膜区室正成为植物发育和应激反应的一种重要机制。我们发现,拟南芥过氧化氢酶2(CAT2)以氧化还原依赖的方式与模拟病变疾病1(LSD1,一种植物特异性程序性细胞死亡调节因子)一起被招募到相分离凝聚物中,这种方式调节其细胞内定位和活性。使用重组蛋白,我们表明CAT2和LSD1与过氧化物酶体导入受体PEX5形成三元复合物。LSD1形成相分离凝聚物的能力是锌指1和2的特性。所有三种蛋白质之间的相互作用以及LSD1凝聚物的流动性受氧化还原调节。使用共聚焦显微镜,显示CAT2在体内向过氧化物酶体和细胞核的运输受氧化还原调节,并且LSD1在体内控制CAT2的定位。我们提出了一个模型,其中凝聚物中CAT2、PEX5和LSD1的氧化还原依赖性差异可及性不仅调节CAT2活性,还调节过氧化物酶体、细胞质和细胞核之间的区室化。过氧化氢酶重新定位到细胞核可能在生物胁迫条件下为核过程提供保护。

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