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Recent Advances in Biosynthetic Modeling of Nitric Oxide Reductasesand Insights Gained from NuclearResonance Vibrational and Other Spectroscopic Studies

机译:一氧化氮还原酶生物合成模型的最新进展和从核能中获得的见解共振振动和其他光谱研究

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摘要

This Forum Article focuses on recent advances in structural and spectroscopic studies of biosynthetic models of nitric oxide reductases (NORs). NORs are complex metalloenzymes found in the denitrification pathway of Earth’s nitrogen cycle where they catalyze the proton-dependent two-electron reduction of nitric oxide (NO) to nitrous oxide (N2O). While much progress has been made in biochemical and biophysical studies of native NORs and their variants, a clear mechanistic understanding of this important metalloenzyme related to its function is still elusive. We report herein UV–vis and nuclear resonance vibrational spectroscopy (NRVS) studies of mononitrosylated intermediates of the NOR reaction of a biosynthetic model. The ability to selectively substitute metals at either heme or nonheme metal sites allows the introduction of independent 57Fe probe atoms at either site, as well as allowing the preparation of analogues of stable reaction intermediates by replacing either metal with a redox inactive metal. Together with previous structural and spectroscopic results, we summarize insights gained from studying these biosynthetic models toward understanding structural featuresresponsible for the NOR activity and its mechanism. The outlook onNOR modeling is also discussed, with an emphasis on the design ofmodels capable of catalytic turnovers designed based on close mimicsof the secondary coordination sphere of native NORs.
机译:本论坛文章重点关注一氧化氮还原酶(NORs)生物合成模型在结构和光谱研究方面的最新进展。 NOR是一种复杂的金属酶,存在于地球氮循环的反硝化途径中,在其中它们催化一氧化氮(NO)转化为一氧化二氮(N2O)的质子依赖性双电子还原。尽管在天然NOR及其变体的生物化学和生物物理研究中已经取得了很大进展,但是对这种重要的金属酶与其功能相关的清晰的机械理解仍然难以捉摸。我们在此报告生物合成模型的NOR反应的单亚硝基化中间体的紫外可见光谱和核共振振动光谱(NRVS)研究。在血红素或非血红素金属位点选择性取代金属的能力允许在任一位点引入独立的 57 Fe探针原子,并允许通过将任一金属替换为稳定的反应中间体来制备类似物氧化还原惰性金属。连同先前的结构和光谱结果,我们总结了通过研究这些生物合成模型而获得的见解,以了解结构特征负责NOR活动及其机制。展望还讨论了NOR建模,重点是基于近似模拟设计的能够催化周转的模型NOR的二级协调领域。

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