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Nitration of Solvent-exposed Tyrosine 74 on Cytochrome c Triggers Heme Iron-Methionine 80 Bond Disruption

机译:暴露于溶剂的酪氨酸74在细胞色素c上的硝化 触发血红素铁-蛋氨酸80键破坏

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摘要

Cytochrome c, a mitochondrial electron transfer protein containing a hexacoordinated heme, is involved in other physiologically relevant events, such as the triggering of apoptosis, and the activation of a peroxidatic activity. The latter occurs secondary to interactions with cardiolipin and/or post-translational modifications, including tyrosine nitration by peroxynitrite and other nitric oxide-derived oxidants. The gain of peroxidatic activity in nitrated cytochrome c has been related to a heme site transition in the physiological pH region, which normally occurs at alkaline pH in the native protein. Herein, we report a spectroscopic characterization of two nitrated variants of horse heart cytochrome c by using optical spectroscopy studies and NMR. Highly pure nitrated cytochrome c species modified at solvent-exposed Tyr-74 or Tyr-97 were generated after treatment with a flux of peroxynitrite, separated, purified by preparative high pressure liquid chromatography, and characterized by mass spectrometry-based peptide mapping. It is shown that nitration of Tyr-74 elicits an early alkaline transition with a pKa = 7.2, resulting in the displacement of the sixth and axial iron ligand Met-80 and replacement by a weaker Lys ligand to yield an alternative low spin conformation. Based on the study of site-specific Tyr to Phe mutants in the four conserved Tyr residues, we also show that this transition is not due to deprotonation of nitro-Tyr-74, but instead we propose a destabilizing steric effect of the nitro group in the mobile Ω-loop of cytochrome c, which is transmitted to the iron center via the nearby Tyr-67. The key role of Tyr-67 in promoting the transition through interactions with Met-80 was further substantiated in the Y67F mutant. These results therefore provide new insights into how a remote post-translational modification in cytochrome c such as tyrosine nitration triggers profound structural changes in the heme ligation and microenvironment and impacts in protein function.
机译:细胞色素c是一种含有六配位血红素的线粒体电子转移蛋白,它还参与其他生理相关事件,例如细胞凋亡的触发和过氧化物活性的激活。后者继发于与心磷脂的相互作用和/或翻译后修饰,包括过氧亚硝酸盐和其他一氧化氮衍生的氧化剂引起的酪氨酸硝化。硝化细胞色素c中过氧化活性的增加与生理pH区域中的血红素位点过渡有关,通常在天然蛋白质的碱性pH下发生。在这里,我们报告了通过使用光谱学研究和NMR两种马心脏细胞色素c的硝化变体的光谱表征。经过亚硝酸盐熔剂处理后,产生高纯度硝酸盐化的细胞色素c物质,该溶剂在暴露于溶剂的Tyr-74或Tyr-97上进行了修饰,分离,通过制备型高压液相色谱法纯化,并通过基于质谱的肽图分析进行了表征。结果表明,Tyr-74的硝化引发了一个早期的碱性转变,pKa = 7.2,导致第六和轴向铁配体Met-80和 用较弱的Lys配体替代以产生另一种低自旋 构象。基于对Phe突变体的位点特异Tyr的研究 四个保守的Tyr残基,我们还表明,这种转变不是由于 硝基-Tyr-74的去质子化,但是我们提出了去稳定化的空间 硝基对细胞色素c移动Ω环的影响 通过附近的Tyr-67传送到炼铁中心。的关键作用 通过与Met-80相互作用促进Tyr-67的转化是 在Y67F突变体中进一步证实。因此,这些结果提供了新的 深入了解细胞色素的远程翻译后修饰 c如酪氨酸硝化触发了深刻的结构变化 血红素连接和微环境及其对蛋白质功能的影响。

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