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线粒体铜伴侣 COX19 影响拟南芥中的铜和铁稳态。

The mitochondrial copper chaperone COX19 influences copper and iron homeostasis in arabidopsis.

机构信息

Instituto de Agrobiotecnología del Litoral (CONICET-UNL), Cátedra de Biología Celular y Molecular, Facultad de Bioquímica y Ciencias Biológicas, Centro Científico Tecnológico CONICET Santa Fe, Universidad Nacional del Litoral, Colectora Ruta Nac. Nº 168 km 0, Paraje el Pozo s/n, 3000, Santa Fe, Argentina.

Instituto de Biología Molecular y Celular de Rosario (IBR-CONICET), Ocampo y Esmeralda s/n, 2000, Rosario, Argentina.

出版信息

Plant Mol Biol. 2019 Apr;99(6):621-638. doi: 10.1007/s11103-019-00840-y. Epub 2019 Feb 18.

Abstract

The mitochondrial metallochaperone COX19 influences iron and copper responses highlighting a role of mitochondria in modulating metal homeostasis in Arabidopsis. The mitochondrial copper chaperone COX19 participates in the biogenesis of cytochrome c oxidase (COX) in yeast and humans. In this work, we studied the function of COX19 in Arabidopsis thaliana, using plants with either decreased or increased COX19 levels. A fusion of COX19 to the red fluorescent protein localized to mitochondria in vivo, suggesting that Arabidopsis COX19 is a mitochondrial protein. Silencing of COX19 using an artificial miRNA did not cause changes in COX activity levels or respiration in plants grown under standard conditions. These amiCOX19 plants, however, showed decreased expression of the low-copper responsive miRNA gene MIR398b and an induction of the miR398 target CSD1 relative to wild-type plants. Plants with increased COX19 levels, instead, showed induction of MIR398b and other low-copper responsive genes. In addition, global transcriptional changes in rosettes of amiCOX19 plants resembled those observed under iron deficiency. Phenotypic analysis indicated that the roots of amiCOX19 plants show altered growth responses to copper excess and iron deficiency. COX activity levels and COX-dependent respiration were lower in amiCOX19 plants than in wild-type plants under iron deficiency conditions, suggesting that COX19 function is particularly important for COX assembly under iron deficiency. The results indicate that the mitochondrial copper chaperone COX19 has a role in regulating copper and iron homeostasis and responses in plants.

摘要

线粒体金属伴侣 COX19 影响铁和铜的响应,突出了线粒体在调节拟南芥金属稳态中的作用。线粒体铜伴侣 COX19 参与酵母和人类细胞色素 c 氧化酶(COX)的生物发生。在这项工作中,我们使用 COX19 水平降低或升高的拟南芥研究了 COX19 的功能。COX19 与红色荧光蛋白的融合在体内定位于线粒体,表明拟南芥 COX19 是一种线粒体蛋白。使用人工 microRNA 沉默 COX19 不会导致标准条件下生长的植物 COX 活性水平或呼吸发生变化。然而,这些 amiCOX19 植物表现出低铜响应 miRNA 基因 MIR398b 的表达降低,以及 miR398 靶标 CSD1 的诱导,与野生型植物相比。相反,COX19 水平升高的植物表现出 MIR398b 和其他低铜响应基因的诱导。此外,amiCOX19 植物的罗勒叶的全转录组变化类似于在缺铁条件下观察到的变化。表型分析表明,amiCOX19 植物的根对铜过量和缺铁的生长反应发生改变。在缺铁条件下,amiCOX19 植物的 COX 活性水平和 COX 依赖的呼吸作用低于野生型植物,这表明 COX19 功能在缺铁条件下对 COX 组装尤为重要。结果表明,线粒体铜伴侣 COX19 在调节植物的铜和铁稳态和响应中起作用。

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