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High-Throughput PIXE as an Essential Quantitative Assay for Accurate Metalloprotein Structural Analysis: Development and Application

机译:高通量PIXE作为准确金属蛋白结构分析的基本定量分析:开发和应用

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摘要

Metalloproteins comprise over one-third of proteins, with approximately half of all enzymes requiring metal to function. Accurate identification of these metal atoms and their environment is a prerequisite to understanding biological mechanism. Using ion beam analysis through particle induced X-ray emission (PIXE), we have quantitatively identified the metal atoms in 30 previously structurally characterized proteins using minimal sample volume and a high-throughput approach. Over half of these metals had been misidentified in the deposited structural models. Some of the PIXE detected metals not seen in the models were explainable as artifacts from promiscuous crystallization reagents. For others, using the correct metal improved the structural models. For multinuclear sites, anomalous diffraction signals enabled the positioning of the correct metals to reveal previously obscured biological information. PIXE is insensitive to the chemical environment, but coupled with experimental diffraction data deposited alongside the structural model it enables validation and potential remediation of metalloprotein models, improving structural and, more importantly, mechanistic knowledge.
机译:金属蛋白占蛋白质的三分之一以上,所有酶中约有一半需要金属发挥功能。准确识别这些金属原子及其环境是了解生物学机制的前提。使用通过粒子诱导X射线发射(PIXE)进行的离子束分析,我们已使用最小的样品量和高通量方法定量鉴定了30种先前具有结构特征的蛋白质中的金属原子。这些金属的一半以上在沉积的结构模型中被错误地识别。在模型中未发现的某些PIXE检测到的金属可以解释为混杂结晶试剂产生的伪影。对于其他人,使用正确的金属可以改善结构模型。对于多核位点,异常衍射信号使正确金属的定位能够揭示先前模糊的生物学信息。 PIXE对化学环境不敏感,但结合在结构模型旁边沉积的实验衍射数据,它可以验证和潜在修复金属蛋白模型,从而改善结构知识,更重要的是改善机械知识。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第1期|185-197|共13页
  • 作者单位

    Ion Beam Centre Advanced Technology Institute University of Surrey Guildford Surrey GU2 7XH United Kingdom;

    Department of Biochemistry University of Oxford South Parks Road Oxford OX1 3QU United Kingdom;

    Hauptman-Woodward Medical Research Institute 700 Ellicott St. Buffalo New York 14203 United States;

    Department of Biological Sciences Columbia University New York New York 10027 United States;

    Department of Chemistry and Chemical Biology Center for Biotechnology and Interdisciplinary Sciences Rensselaer Polytechnic Institute Troy New York 12180 United States;

    Hauptman-Woodward Medical Research Institute 700 Ellicott St. Buffalo New York 14203 United States Materials Design and Innovation SUNY Buffalo 700 Ellicott St. Buffalo New York 14203 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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