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首页> 外文期刊>Journal of the American Chemical Society >Characterization of Americium and Curium Complexes with the Protein Lanmodulin: A Potential Macromolecular Mechanism for Actinide Mobility in the Environment
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Characterization of Americium and Curium Complexes with the Protein Lanmodulin: A Potential Macromolecular Mechanism for Actinide Mobility in the Environment

机译:含有蛋白甘露霉素的亚美和含有含有含有含有含有含量的含量的潜在大分子机制

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摘要

Anthropogenic radionuclides, including long-lived heavy actinides such as americium and curium, represent the primary long-term challenge for management of nuclear waste. The potential release of these wastes into the environment necessitates understanding their interactions with biogeochemical compounds present in nature. Here, we characterize the interactions between the heavy actinides, Am~(3+) and Cm~(3+), and the natural lanthanide-binding protein, lanmodulin (LanM). LanM is produced abundantly by methylotrophic bacteria, including Methyloru-brum extorquens, that are widespread in the environment. We determine the first stability constant for an Am~(3+)-protein complex (Am_3LanM) and confirm the results with Cm3LanM, indicating a~5-fold higher affinity than that for lanthanides with most similar ionic radius, Nd~(3+) and Sm~(3+), and making LanM the strongest known heavy actinide-binding protein. The protein's high selectivity over ~(234)Am's daughter nuclide ~(239)Np enables lab-scale actinide-actinide separations as well as provides insight into potential protein-driven mobilization for these actinides in the environment. The luminescence properties of the Cm~(3+)-LanM complex, and NMR studies of Gd~(3+)-LanM, reveal that lanmodulin-bound f-elements possess two coordinated solvent molecules across a range of metal ionic radii. Finally, we show under a wide range of environmentally relevant conditions that lanmodulin effectively outcompetes desferrioxamine B, a hydroxamate siderophore previously proposed to be important in trivalent actinide mobility. These results suggest that natural lanthanide-binding proteins such as lanmodulin may play important roles in speciation and mobility of actinides in the environment; it also suggests that protein-based biotechnologies may provide a new frontier in actinide remediation, detection, and separations.
机译:人为放射性核素,包括长期的重型散光,如亚美和含锡,代表了核废料管理的主要长期挑战。这些废物进入环境的潜在释放需要了解它们与本质上存在的生物地良细化合物的相互作用。在此,我们表征重型散光,AM〜(3+)和cm〜(3+)之间的相互作用,以及天然镧系元素结合蛋白,Lanmodulin(LANM)。 LANM由甲基营养细菌大规模生产,包括甲基鲁姆 - BRUM幽门,在环境中普及。我们确定AM〜(3 +) - 蛋白质复合物(AM_3LANM)的第一稳定性常数,并用CM3LANM确认结果,表明与镧系元素最相似的离子半径,ND〜(3+ )和Sm〜(3+),并使LANM成为最强烈的已知的重型致粘连蛋白。蛋白质的高选择性超过〜(234)AM的女儿核素〜(239)NP使Lab-Scalide-致动术分离,并为这些环境中的这些缺散物的潜在蛋白驱动的动员提供了洞察力。 CM〜(3 +) - LANM复合物的发光性质和GD〜(3 +) - LANM的NMR研究,揭示了甘草霉素结合的F元素在一系列金属离子半径上具有两个配位的溶剂分子。最后,我们在广泛的环境相关条件下展示了甘草林有效脱颖以脱脂素B,先前提出的一种羟肟酸甲胺醇在三价散发性迁移率中重要。这些结果表明,天然镧系元素如Lanmodulin,在环境中的散浮虫的形态和流动性中起重要作用;它还表明基于蛋白质的生物技术可以在贴心修复,检测和分离中提供新的前沿。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第38期|15769-15783|共15页
  • 作者单位

    Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore California 94550 United States Glenn T. Seaborg Institute Lawrence Livermore National Laboratory Livermore California 94550 United States;

    Department of Chemistry The Pennsylvania State University University Park Pennsylvania 16802 United States;

    Athinoula A. Martinos Center for Biomedical Imaging Department of Radiology Massachusetts General Hospital/Harvard Medical School Charlestown Massachusetts 02129 United States;

    Athinoula A. Martinos Center for Biomedical Imaging Department of Radiology Massachusetts General Hospital/Harvard Medical School Charlestown Massachusetts 02129 United States;

    Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore California 94550 United States Glenn T. Seaborg Institute Lawrence Livermore National Laboratory Livermore California 94550 United States;

    Physical and Life Sciences Directorate Lawrence Livermore National Laboratory Livermore California 94550 United States Glenn T. Seaborg Institute Lawrence Livermore National Laboratory Livermore California 94550 United States;

    Department of Chemistry The Pennsylvania State University University Park Pennsylvania 16802 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);
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  • 正文语种 eng
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