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Molecular and biochemical analysis of the novel molybdenum-enzyme mARC

Molecular and biochemical analysis of the novel molybdenum-enzyme mARC
新型钼酶 mARC 的分子和生化分析
批准号:
40342284
负责人:
Dr. Florian Bittner
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
2007
资助国家:
德国
项目状态:
已结题
起止时间:
2006-12-31 至 2010-12-31

项目摘要

项目成果

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中文摘要
翻译
在这个项目中,我们希望揭示植物marc样蛋白的功能和重要性,其中两个是由拟南芥基因组编码的。mARC(线粒体偕胺肟还原组分)是最近在哺乳动物中发现的一种新型钼酶。我们的初步工作表明,来自猪肝线粒体外膜的mARC是真核生物中已知最小的钼酶,其活性严格依赖于钼辅助因子。mARC似乎代表了一种新型的钼蛋白,因为它只在与其他蛋白质的复合物中获得酶活性,而迄今为止已知的所有其他钼酶都包含在单个多肽链中活性所需的所有假基。我们将研究植物marc样蛋白的酶学和结构特征,并检查这些蛋白是否与形成氧化还原复合物的其他蛋白相关。我们打算分析植物mARC同源物是否位于线粒体外膜以及它们是否具有n还原能力。最后,我们希望描述marc样蛋白在植物代谢中的作用,并阐明它们对植物的重要性。
英文摘要
In this project we want to unveil the function and importance of plant mARC-like proteins, of which two are encoded by the genome of Arabidopsis thaliana. mARC (mitochondrial amidoxime reducing component) is a novel molybdenum-enzyme that we have very recently discovered in mammals. Our preliminary work showed that mARC from the outer membrane of pig liver mitochondria is the smallest molybdenum-enyzme known in eukaryotes and that its activity is strictly dependent on molybdenum cofactor. mARC seems to represent a new type of molybdenum-proteins as it gains enzymatic activity only in complex with other proteins, while all other molybdenum-enzymes known to date comprise all prosthetic groups required for activity within a single polypetide chain. We will study the enzymatic and structural characteristics of plant mARC-like proteins and examine whether these proteins are associated with other proteins forming a redox complex. We intend to analyze whether the plant mARC homologs are located at the outer membrane of mitochondria and whether they have N-reducing capacity. Finally we want to delineate the metabolic role played by mARC-like proteins and clarify their importance for the plant.
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会议论文
Biochemistry of Molybdenum and Iron Metabolisms in Plants: Characterisation of novel enzymes and unknown interrelationships
The role of mitochondria for molybdenum cofactor biosynthesis
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