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Plant autophagy is responsible for peroxisomal transition and plays an important role in the maintenance of peroxisomal quality

机译:植物自噬负责过氧化物酶体的过渡并在维持过氧化物酶体的质量中起重要作用

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摘要

In photosynthetic cells, a large amount of hydrogen peroxide is produced in peroxisomes through photorespiration, which is a metabolic pathway related to photosynthesis. Hydrogen peroxide, a reactive oxygen species, oxidizes peroxisomal proteins and membrane lipids, resulting in a decrease in peroxisomal quality. We demonstrate that the autophagic system is responsible for the elimination of oxidized peroxisomes in plant. We isolated Arabidopsis mutants that accumulated oxidized peroxisomes, which formed large aggregates. We revealed that these mutants were defective in autophagy-related (ATG) genes and that the aggregated peroxisomes were selectively targeted by the autophagic machinery. These findings suggest that autophagy plays an important role in the quality control of peroxisomes by the selective degradation of oxidized peroxisomes. In addition, the results suggest that autophagy is also responsible for the functional transition of glyoxysomes to leaf peroxisomes.
机译:在光合作用细胞中,过氧化物酶体通过光呼吸产生大量的过氧化氢,光呼吸是与光合作用相关的代谢途径。过氧化氢是一种活性氧,它会氧化过氧化物酶体蛋白和膜脂质,导致过氧化物酶体质量下降。我们证明自噬系统负责消除植物中的氧化过氧化物酶。我们分离了积累了氧化过氧化物酶体的拟南芥突变体,形成了大的聚集体。我们发现这些突变体在自噬相关(ATG)基因中存在缺陷,并且聚集的过氧化物酶体被自噬机制选择性靶向。这些发现表明自噬通过氧化过氧化物酶体的选择性降解在过氧化物酶体的质量控制中起重要作用。另外,结果表明自噬也负责乙醛酸体向叶过氧化物酶体的功能转变。

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