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Light-induced release of nitric oxide from the nitric oxide-bound CDGSH-type [2Fe-2S] clusters in mitochondrial protein Miner2

机译:从一氧化氮结合的CDGSH型[2FE-2S]簇中的一氧化氮释放释放线粒体蛋白质矿物中的簇2

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摘要

Human mitochondrial matrix protein Miner2 hosts two [2Fe-2S] clusters via two CDGSH (Cys-Asp-Gly-Ser-His) motifs. Unlike other iron-sulfur clusters in proteins, the reduced CDGSH-type [2Fe-2S] clusters in Miner2 are able to bind nitric oxide (NO) and form stable NO-bound [2Fe-2S] clusters without disruption of the clusters. Here we report that the NO-bound Miner2 [2Fe-2S] clusters can quickly release NO upon the visible light excitation. The UV-visible and Electron Paramagnetic Resonance (EPR) measurements show that the NO-bound Miner2 [2Fe-2S] clusters are converted to the reduced Miner2 [2Fe-2S] clusters upon the light excitation under anaerobic conditions, suggesting that NO binding in the reduced Miner2 [2Fe-2S] clusters is reversible. Additional studies reveal that binding of NO effectively inhibits the redox transition of the Miner2 [2Fe-2S] clusters, indicating that NO may modulate the physiological activity of Miner2 in mitochondria by directly binding to the CDGSH-type [2Fe-2S] clusters in the protein.
机译:人体线粒体基质蛋白质矿物2通过两个CDGSH(Cys-Asp-Gly-Ser-His)图案宿主两个[2FE-2S]簇。与其他蛋白质中的其他铁硫簇不同,矿工中的还原的CDGSH型[2FE-2S]簇能够结合一氧化氮(NO)并形成稳定的无结合的[2FE-2S]簇而不会破坏簇。在这里,我们报告说,无限制的矿工2 [2FE-2S]集群可以在可见光励磁上快速释放不释放。 UV可见光和电子顺磁共振(EPR)测量表明,在厌氧条件下,无结合的矿工2 [2FE-2S]簇转化为降低的矿工2 [2FE-2S]簇,表明没有结合减少的矿工2 [2FE-2S]簇是可逆的。额外的研究表明,没有有效地抑制矿物2 [2FE-2S]簇的氧化还原转变,表明NO可以通过直接结合CDGSH型[2FE-2S]簇来调节线粒体中矿物质的生理活性。蛋白质。

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