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首页> 外文期刊>Journal of Molecular Biology >Disruption of a nuclear gene encoding a mitochondrial gamma carbonic anhydrase reduces complex I and supercomplex I+III2 levels and alters mitochondrial physiology in Arabidopsis
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Disruption of a nuclear gene encoding a mitochondrial gamma carbonic anhydrase reduces complex I and supercomplex I+III2 levels and alters mitochondrial physiology in Arabidopsis

机译:编码线粒体γ碳酸酐酶的核基因的破坏降低了拟南芥中的复合体I和超复合体I + III2水平,并改变了线粒体生理

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Mitochondrial NADH dehydrogenase (complex 1) of plants includes quite a number of plant-specific subunits, some of which exhibit sequence similarity to bacterial gamma-carbonic anhydrases. A homozygous Arabidopsis knockout mutant carrying a T-DNA insertion in a gene encoding one of these subunits (At1g47260) was generated to investigate its physiological role. Isolation of mitochondria and separation of mitochondrial protein complexes by Blue-native polyacrylamide gel electrophoresis or sucrose gradient ultracentrifugation revealed drastically reduced complex I levels. Furthermore, the mitochondrial I+III2 supercomplex was very much reduced in mutant plants. Remaining complex I had normal molecular mass, suggesting substitution of the At1g47260 protein by one or several of the structurally related subunits of this respiratory protein complex. Immune-blotting experiments using polyclonal antibodies directed against the At1g47260 protein indicated its presence within complex I, the I+III2 supercomplex and smaller protein complexes, which possibly represent subcomplexes of complex I. Changes within the mitochondrial proteome of mutant cells were systematically monitored by fluorescence difference gel electrophoresis using 2D Blue-native/SDS and 2D isoelectric focussing/SDS polyacrylamide gel electrophoresis. Complex I subunits are largely absent within the mitochondrial proteome. Further mitochondrial proteins are reduced in mutant plants, like mitochondrial ferredoxin, others are increased, like formate dehydrogenase. Development of mutant plants was normal under standard growth conditions. However, a suspension cell culture generated from mutant plants exhibited clearly reduced growth rates and respiration. In summary, At1g47260 is important for complex I assembly in plant mitochondria and respiration. A role of At1g47260 in mitochondrial one-carbon metabolism is supported by microarray analyses. (c) 2005 Elsevier Ltd. All rights reserved.
机译:植物的线粒体NADH脱氢酶(复合物1)包括许多植物特异性亚基,其中一些与细菌γ-碳酸酐酶具有相似的序列。产生了一个纯合的拟南芥基因敲除突变体,该突变体在编码这些亚基之一的基因(At1g47260)中携带T-DNA插入,​​以研究其生理作用。通过Blue-native聚丙烯酰胺凝胶电泳或蔗糖梯度超速离心分离线粒体并分离线粒体蛋白复合物,可显着降低复合物I水平。此外,突变植物中的线粒体I + III2超复合物大大减少。剩余的复合物I具有正常的分子量,表明At1g47260蛋白被该呼吸蛋白复合物的一个或几个结构相关亚基取代。使用针对At1g47260蛋白的多克隆抗体进行的免疫印迹实验表明,它存在于复合体I,I + III2超复合体和较小的蛋白质复合体中,这些复合体可能代表复合体I的亚复合体。通过荧光系统地监测了突变细胞线粒体蛋白质组中的变化2D Blue-native / SDS和2D等电聚焦/ SDS聚丙烯酰胺凝胶电泳进行差异凝胶电泳。线粒体蛋白质组中基本上不存在复杂的I亚基。突变植物中的线粒体蛋白进一步减少,例如线粒体铁氧还蛋白,其他的则增加,例如甲酸脱氢酶。在标准生长条件下,突变植物的发育正常。然而,由突变植物产生的悬浮细胞培养物表现出明显降低的生长速率和呼吸作用。总之,At1g47260对于植物线粒体中的复杂I组装和呼吸作用非常重要。基因芯片分析支持At1g47260在线粒体一碳代谢中的作用。 (c)2005 Elsevier Ltd.保留所有权利。

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