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首页> 外文期刊>Chemistry - A European Journal >Key Players and Their Role During Mitochondrial Iron–Sulfur Cluster Biosynthesis
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Key Players and Their Role During Mitochondrial Iron–Sulfur Cluster Biosynthesis

机译:线粒体铁硫簇生物合成过程中的关键角色及其作用

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摘要

Iron–sulfur clusters are multifaceted iron-containing cofactors coordinated and utilized by numerous proteins in nearly all biological systems. Fe–S-cluster-containing proteins help direct pathways essential for cell viability and participate in biological applications ranging from nucleotide biosynthesis and stability, protein translation, enzyme catalysis, and mitochondrial metabolism. Fe–S-containing proteins function by utilizing the unique electronic and chemical properties inherent in the Fe containing cofactor. Fe–S clusters are constructed of inorganic iron and sulfide arranged in a distinct caged structural makeup ranging from [Fe2–S2], [Fe3–S4], [Fe4–S4], up to [Fe8–S8] clusters. In eukaryotes, cluster activity is controlled in part at the assembly level and the major pathway for cluster production exists within the mitochondria. Recent insight into the pathway of mitochondrial cluster assembly has come from new in vivo and in vitro reports that provided direct insight into how all protein partners within the assembly pathway interact. However, we are only just beginning to understand the role of each protein within this complex pageant that is mitochondrial Fe–S cluster assembly. In this report we present results, using the yeast model for mitochondrial assembly, to describe the molecular details of how important proteins in the pathway coordinate for cluster assembly.
机译:铁-硫簇是多方面的含铁辅因子,几乎所有生物系统中的众多蛋白质都对其进行协调和利用。含有Fe–S簇的蛋白质有助于引导细胞活力所必需的途径,并参与生物学应用,包括核苷酸生物合成和稳定性,蛋白质翻译,酶催化和线粒体代谢。含FeS的蛋白质通过利用含Fe辅因子固有的独特电子和化学性质起作用。 Fe–S团簇由无机铁和硫化物构成,排列成不同的笼状结构组成,范围从[Fe 2 –S 2 ],[Fe 3 –S 4 ],[Fe 4 –S 4 ],直至[Fe 8 –S 8 ]个集群。在真核生物中,簇的活性在组装水平上受到部分控制,并且簇产生的主要途径存在于线粒体内。对线粒体簇组装途径的最新见解来自新的体内和体外报告,这些报告提供了对组装途径中所有蛋白质伴侣如何相互作用的直接见解。但是,我们才刚刚开始了解每种蛋白质在线粒体Fe–S簇组装这一复杂选美中的作用。在本报告中,我们使用线粒体组装的酵母模型介绍了蛋白质的分子细节,该蛋白质详细说明了该途径中重要蛋白质如何协调簇的组装。

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