首页> 美国卫生研究院文献>Plant Physiology >Glutaredoxin S15 Is Involved in Fe-S Cluster Transfer in Mitochondria Influencing Lipoic Acid-Dependent Enzymes Plant Growth and Arsenic Tolerance in Arabidopsis
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Glutaredoxin S15 Is Involved in Fe-S Cluster Transfer in Mitochondria Influencing Lipoic Acid-Dependent Enzymes Plant Growth and Arsenic Tolerance in Arabidopsis

机译:Glutaredoxin S15参与线粒体中的Fe-S簇转移影响拟南芥中脂酸依赖性酶植物生长和砷耐受性。

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摘要

Glutaredoxins (Grxs) are small proteins that function as oxidoreductases with roles in deglutathionylation of proteins, reduction of antioxidants, and assembly of iron-sulfur (Fe-S) cluster-containing enzymes. Which of the 33 Grxs in Arabidopsis (Arabidopsis thaliana) perform roles in Fe-S assembly in mitochondria is unknown. We have examined in detail the function of the monothiol GrxS15 in plants. Our results show its exclusive mitochondrial localization, and we are concluding it is the major or only Grx in this subcellular location. Recombinant GrxS15 has a very low deglutathionylation and dehydroascorbate reductase activity, but it binds a Fe-S cluster. Partially removing GrxS15 from mitochondria slowed whole plant growth and respiration. Native GrxS15 is shown to be especially important for lipoic acid-dependent enzymes in mitochondria, highlighting a putative role in the transfer of Fe-S clusters in this process. The enhanced effect of the toxin arsenic on the growth of GrxS15 knockdown plants compared to wild type highlights the role of mitochondrial glutaredoxin Fe-S-binding in whole plant growth and toxin tolerance.
机译:戊二酮(Grxs)是一种小蛋白质,可充当氧化还原酶,在蛋白质的脱谷胱甘肽化,抗氧化剂的还原以及含铁硫(Fe-S)簇的酶的组装中起作用。拟南芥(Arabidopsis thaliana)的33个Grx中,哪个在线粒体的Fe-S组装中起作用。我们已经详细检查了单硫醇GrxS15在植物中的功能。我们的结果显示了其唯一的线粒体定位,并且我们认为它是该亚细胞位置的主要或唯一的Grx。重组GrxS15具有非常低的脱谷胱甘肽酰化和脱氢抗坏血酸还原酶活性,但它结合了Fe-S簇。从线粒体中部分除去GrxS15减慢了整个植物的生长和呼吸。天然GrxS15被证明对于线粒体中依赖硫辛酸的酶特别重要,突出了在此过程中Fe-S团簇转移的推定作用。与野生型相比,毒素砷对GrxS15基因敲除植物生长的增强作用突出了线粒体戊二醛毒素Fe-S结合在整株植物生长和毒素耐受性中的作用。

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