首页> 外文期刊>Biochemistry >Arabidopsis thaliana Nfu2 accommodates [2Fe-2S] or [4Fe-4S] clusters and is competent for in vitro maturation of chloroplast [2Fe-2S] and [4Fe-4S] cluster-containing proteins
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Arabidopsis thaliana Nfu2 accommodates [2Fe-2S] or [4Fe-4S] clusters and is competent for in vitro maturation of chloroplast [2Fe-2S] and [4Fe-4S] cluster-containing proteins

机译:拟南芥Nfu2可以容纳[2Fe-2S]或[4Fe-4S]簇,并能够在体外成熟叶绿体[2Fe-2S]和[4Fe-4S]簇蛋白

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摘要

Nfu-type proteins are essential in the biogenesis of iron-sulfur (Fe-S) clusters in numerous organisms. A number of phenotypes including low levels of Fe-S cluster incorporation are associated with the deletion of the gene encoding a chloroplast-specific Nfu-type protein, Nfu2 from Arabidopsis thaliana (AtNfu2). Here, we report that recombinant AtNfu2 is able to assemble both [2Fe-2S] and [4Fe-4S] clusters. Analytical data and gel filtration studies support cluster/protein stoichiometries of one [2Fe-2S] cluster/homotetramer and one [4Fe-4S] cluster/homodimer. The combination of UV-visible absorption and circular dichroism and resonance Raman and M?ssbauer spectroscopies has been employed to investigate the nature, properties, and transfer of the clusters assembled on Nfu2. The results are consistent with subunit-bridging [2Fe-2S]~(2+) and [4Fe-4S]~(2+) clusters coordinated by the cysteines in the conserved CXXC motif. The results also provided insight into the specificity of Nfu2 for the maturation of chloroplastic Fe-S proteins via intact, rapid, and quantitative cluster transfer. [2Fe-2S] cluster-bound Nfu2 is shown to be an effective [2Fe-2S]~(2+) cluster donor for glutaredoxin S16 but not glutaredoxin S14. Moreover, [4Fe-4S] cluster-bound Nfu2 is shown to be a very rapid and efficient [4Fe-4S]~(2+) cluster donor for adenosine 5'-phosphosulfate reductase (APR1), and yeast two-hybrid studies indicate that APR1 forms a complex with Nfu2 but not with Nfu1 and Nfu3, the two other chloroplastic Nfu proteins. This cluster transfer is likely to be physiologically relevant and is particularly significant for plant metabolism as APR1 catalyzes the second step in reductive sulfur assimilation, which ultimately results in the biosynthesis of cysteine, methionine, glutathione, and Fe-S clusters.
机译:Nfu型蛋白在许多生物中的铁硫(Fe-S)簇的生物合成中至关重要。包括低水平的Fe-S团簇掺入在内的许多表型与拟南芥(AtNfu2)中编码叶绿体特异性Nfu型蛋白Nfu2的基因的缺失有关。在这里,我们报告重组AtNfu2能够组装[2Fe-2S]和[4Fe-4S]簇。分析数据和凝胶过滤研究支持一种[2Fe-2S]簇/同四聚体和一种[4Fe-4S]簇/同二聚体的簇/蛋白质化学计量。紫外可见吸收和圆二色性以及共振拉曼光谱和Msssbauer光谱的结合已被用于研究在Nfu2上组装的团簇的性质,性质和转移。结果与保守的CXXC基序中由半胱氨酸协调的亚基桥接[2Fe-2S]〜(2+)和[4Fe-4S]〜(2+)簇是一致的。结果还提供了对Nfu2通过完整,快速和定量簇转移来成熟叶绿体Fe-S蛋白的特异性的了解。 [2Fe-2S]簇结合Nfu2被证明是有效的[2Fe-2S]〜(2+)簇供体,用于戊二醛S16,而不是戊二醛S14。此外,[4Fe-4S]簇结合的Nfu2被证明是一种非常快速和有效的[4Fe-4S]〜(2+)簇供体,用于腺苷5'-磷酸磷酸还原酶(APR1),并且酵母两杂交研究表明APR1与Nfu2形成复合物,但不与另外两个叶绿体Nfu蛋白Nfu1和Nfu3形成复合物。这种簇转移可能与生理有关,并且对于植物代谢特别重要,因为APR1催化还原性硫同化的第二步,最终导致半胱氨酸,蛋氨酸,谷胱甘肽和Fe-S簇的生物合成。

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