首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Binding of Nitric Oxide in CDGSH-type 2Fe-2S Clusters of the Human Mitochondrial Protein Miner2
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Binding of Nitric Oxide in CDGSH-type 2Fe-2S Clusters of the Human Mitochondrial Protein Miner2

机译:一氧化氮在人类线粒体蛋白Miner2的CDGSH型2Fe-2S簇中的结合。

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摘要

Iron-sulfur proteins are among the primary targets of nitric oxide in cells. Previous studies have shown that iron-sulfur clusters hosted by cysteine residues in proteins are readily disrupted by nitric oxide forming a protein-bound dinitrosyl iron complex, thiolate-bridged di-iron tetranitrosyl complex, or octanitrosyl cluster. Here we report that human mitochondrial protein Miner2 [2Fe-2S] clusters can bind nitric oxide without disruption of the clusters. Miner2 is a member of a new CDGSH iron-sulfur protein family that also includes two mitochondrial proteins: the type II diabetes-related mitoNEET and the Wolfram syndrome 2-linked Miner1. Miner2 contains two CDGSH motifs, and each CDGSH motif hosts a [2Fe-2S] cluster via three cysteine and one histidine residues. Binding of nitric oxide in the reduced Miner2 [2Fe-2S] clusters produces a major absorption peak at 422 nm without releasing iron or sulfide from the clusters. The EPR measurements and mass spectrometry analyses further reveal that nitric oxide binds to the reduced [2Fe-2S] clusters in Miner2, with each cluster binding one nitric oxide. Although the [2Fe-2S] cluster in purified human mitoNEET and Miner1 fails to bind nitric oxide, a single mutation of Asp-96 to Val in mitoNEET or Asp-123 to Val in Miner1 facilitates nitric oxide binding in the [2Fe-2S] cluster, indicating that a subtle change of protein structure may switch mitoNEET and Miner1 to bind nitric oxide. The results suggest that binding of nitric oxide in the CDGSH-type [2Fe-2S] clusters in mitochondrial protein Miner2 may represent a new nitric oxide signaling mode in cells.
机译:铁硫蛋白是细胞中一氧化氮的主要靶标之一。以前的研究表明,蛋白质中的半胱氨酸残基所占据的铁硫簇容易被一氧化氮破坏,形成蛋白质结合的二亚硝基铁络合物,硫醇盐桥连的二亚铁四亚硝酰络合物或八亚硝基簇。在这里,我们报告人类线粒体蛋白Miner2 [2Fe-2S]簇可以结合一氧化氮而不会破坏簇。 Miner2是新的CDGSH铁硫蛋白家族的成员,该家族还包括两个线粒体蛋白:II型糖尿病相关的mitoNEET和Wolfram综合征2连锁Miner1。 Miner2包含两个CDGSH基序,每个CDGSH基序通过3个半胱氨酸和1个组氨酸残基组成一个[2Fe-2S]簇。一氧化氮在还原的Miner2 [2Fe-2S]簇中的结合会在422 nm处产生一个主要的吸收峰,而不会从簇中释放铁或硫化物。 EPR测量和质谱分析进一步揭示一氧化氮与Miner2中还原的[2Fe-2S]簇结合,每个簇结合一个一氧化氮。尽管纯化的人mitoNEET和Miner1中的[2Fe-2S]簇无法结合一氧化氮,但mitoNEET中Asp-96与Val的单突变或Miner1中Asp-123与Val的单突变促进了[2Fe-2S]中一氧化氮的结合。簇,表明蛋白质结构的细微变化可能会切换mitoNEET和Miner1以结合一氧化氮。结果表明,一氧化氮在线粒体蛋白Miner2的CDGSH型[2Fe-2S]簇中的结合可能代表了细胞中一氧化氮的新信号传导模式。

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