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Synchrotron NRVS and Campus Spectroscopy of Multinuclear Fe Proteins: N2ase, H2as

Synchrotron NRVS and Campus Spectroscopy of Multinuclear Fe Proteins: N2ase, H2as
多核 Fe 蛋白的同步加速器 NRVS 和 Campus 光谱:N2ase、H2as
批准号:
8796719
负责人:
Stephen P. Cramer
金额:
$29.1万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-03-01 至 2016-05-31

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中文摘要
翻译
描述(由申请人提供):本提案的总体目标是更好地了解含金属酶的工作原理。更具体的目标包括表征三种具有“不寻常”活性位点的铁基金属酶——氮酶(N2ase)、氢化酶(H2ase)和甲烷单加氧酶(MMO)。我们还试图了解来自分枝杆菌和链霉菌的特殊Fe-S簇('Wbl')蛋白如何在其环境中感知NO和O2。我们希望回答的问题围绕着分子结构(什么原子在哪里)和动力学(原子如何运动)。为了获得这些知识,我们安排了化学家、生物化学家和光谱学家之间的密切合作。我们将开发或增强光谱“探针”,使我们能够回答有关酶中间体结构的问题。其中包括同步辐射实验室XAFS和NRVS的x射线和核技术。我们将平衡这些“大型设施”的方法与校园为基础的光谱,包括EPR, FT-IR和M“斯堡尔,两者都作为直接探针,并结合紫外线-可见光解方法。对于N2ase、H2ase和MMO,我们计划解决的问题是:在催化循环过程中结构是如何变化的?底物和抑制剂在哪里结合?什么是未定义的光原子?同样的问题也适用于NO和O2与Wbl蛋白的相互作用,只不过这些反应涉及到感知小分子而不是催化。我们的光谱技术将使我们能够监测酶的活性位点。我们将利用这种能力专注于蛋白质晶体学无法触及的结构和动态问题。
英文摘要
DESCRIPTION (provided by applicant): The broad objective of this proposal is a better understanding of how metal-containing enzymes work. The more specific aims involve characterization of three classes of Fe-based metalloenzymes with 'unusual' active sites -- nitrogenase (N2ase), hydrogenase (H2ase), and methane monooxygenase (MMO). We also seek to understand how special Fe-S cluster ('Wbl') proteins from Mycobacteria and Streptomyces bacteria sense NO and O2 in their environment. The questions that we hope to answer revolve around molecular structure (what atoms are where) and dynamics (how the atoms move). To achieve this knowledge, we have arranged close collaborations between chemists, biochemists, and spectroscopists. We will develop or enhance spectroscopic 'probes' that allow us to answer questions about the structure of enzyme intermediates. These include x-ray and nuclear techniques at synchrotron radiation labs -- XAFS and NRVS. We will balance these 'large facility' methods with campus-based spectroscopies including EPR, FT-IR, and M"ssbauer, both as direct probes and combined with UV-visible photolysis methods. For N2ase, H2ase, and MMO, the questions that we plan to address are: How does structure change during the course of the catalytic cycle? Where do substrates and inhibitors bind? What are the undefined light atoms? The same questions apply to the interactions of NO and O2 with Wbl proteins, except that the reactions involve sensing small molecules as opposed to catalysis. Our spectroscopic techniques will allow us to monitor the enzyme active sites. We will use this capability to focus on structural and dynamic issues that are beyond the reach of protein crystallography.
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A HIGH MAGNETIC FIELD MOSSBAUER INSTRUMENT
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    7390087
  • 项目类别:
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  • 财政年份:
    2008
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SITE SELECTIVE EXAFS AND RIXS OF FE-ONLY HYDROGENASE AND RELATED MODELS
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SPHERICALLY BENT SI ANALYSER CRYSTALS FOR RIXS WITH INTRENSIC RESOL OF 150 MEV
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    7369172
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    2006
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THE CORE HOLE EFFECT IN TRANSITION METAL INER-SHELL SPECTROSCOPY
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    7182117
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  • 财政年份:
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  • 依托单位:
海外基金