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Thermodynamics of Transition Metal Ion Binding to Proteins

机译:过渡金属离子与蛋白质结合的热力学

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摘要

Modeling the thermodynamics of a transition metal (TM) ion assembly be it in proteins or in coordination complexes affords us a better understanding of the assembly and function of metalloclusters in diverse application areas including metal organic framework design, TM-based catalyst design, the trafficking of TM ions in biological systems, and drug design in metalloprotein platforms. While the structural details of TM ions bound to metalloproteins are generally well understood via experimental and computational approaches, accurate studies describing the thermodynamics of TM ion binding are rare. Herein, we demonstrate that we can obtain accurate structural and absolute binding free energies of Co~(2+) and Ni~(2+) to the enzyme glyoxalase I using an optimized 12-6-4 (ml2-6-4) potential. Critically, this model simultaneously reproduces the solvation free energy of the individual TM ions and reproduces the thermodynamics of TM ion-ligand coordination as well as the thermodynamics of TM ion binding to a protein active site unlike extant models. We find the incorporation of the thermodynamics associated with protonation state changes for the TM ion (un)binding to be crucial. The high accuracy of ml2-6-4 potential in this study presents an accurate route to explore more complicated processes associated with TM cluster assembly and TM ion transport.
机译:对过渡金属(TM)离​​子组件在蛋白质或配位络合物中的热力学进行建模,可以使我们更好地了解金属簇在各种应用领域的组装和功能,包括金属有机骨架设计,基于TM的催化剂设计,运输系统中TM离子的检测以及金属蛋白平台中的药物设计。尽管通过实验和计算方法通常可以很好地理解结合到金属蛋白上的TM离子的结构细节,但是很少有描述TM离子结合的热力学的精确研究。在这里,我们证明我们可以使用优化的12-6-4(ml2-6-4)电位获得Co〜(2+)和Ni〜(2+)与乙二醛酶I的准确结构和绝对结合自由能。至关重要的是,与现有模型不同,该模型可同时复制单个TM离子的溶剂化自由能,并复制TM离子-配体配位的热力学以及TM离子与蛋白质活性位点结合的热力学。我们发现与质子状态变化相关的热力学的结合对于TM离子(非)结合至关重要。 ml2-6-4电位的高精度在这项研究中提供了探索与TM簇组装和TM离子迁移相关的更复杂过程的准确途径。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第13期|6365-6374|共10页
  • 作者单位

    Department of Chemistry Michigan State University East Lansing Michigan 48824 United States;

    Department of Chemistry Department of Biochemistry and Molecular Biology and Institute of Cyber-Enabled Research Michigan State University East Lansing Michigan 48824 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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