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铁反应元件 (IRE)-阿尔茨海默病淀粉样前体蛋白结合铁调节蛋白 (IRP1)的 mRNA:一种联合分子对接和光谱方法。

Iron response elements (IREs)-mRNA of Alzheimer's amyloid precursor protein binding to iron regulatory protein (IRP1): a combined molecular docking and spectroscopic approach.

机构信息

Department of Life Sciences, College of Science & General Studies, Alfaisal University, Riyadh, Saudi Arabia.

Centre for Interdisciplinary Research in Basic Sciences, Jamia Millia Islamia, Jamia Nagar, New Delhi, 110025, India.

出版信息

Sci Rep. 2023 Mar 28;13(1):5073. doi: 10.1038/s41598-023-32073-x.

Abstract

The interaction between the stem-loop structure of the Alzheimer's amyloid precursor protein IRE mRNA and iron regulatory protein was examined by employing molecular docking and multi-spectroscopic techniques. A detailed molecular docking analysis of APP IRE mRNA∙IRP1 reveals that 11 residues are involved in hydrogen bonding as the main driving force for the interaction. Fluorescence binding results revealed a strong interaction between APP IRE mRNA and IRP1 with a binding affinity and an average binding sites of 31.3 × 10 M and 1.0, respectively. Addition of Fe(anaerobic) showed a decreased (3.3-fold) binding affinity of APP mRNA∙IRP1. Further, thermodynamic parameters of APP mRNA∙IRP1 interactions were an enthalpy-driven and entropy-favored event, with a large negative ΔH (-25.7 ± 2.5 kJ/mol) and a positive ΔS (65.0 ± 3.7 J/mol·K). A negative ΔH value for the complex formation suggested the contribution of hydrogen bonds and van der Waals forces. The addition of iron increased the enthalpic contribution by 38% and decreased the entropic influence by 97%. Furthermore, the stopped-flow kinetics of APP IRE mRNA∙IRP1 also confirmed the complex formation, having the rate of association (k) and the rate of dissociation (k) as 341 μM s, and 11 s, respectively. The addition of Fe has decreased the rate of association (k) by ~ three-fold, whereas the rate of dissociation (k) has increased by ~ two-fold. The activation energy for APP mRNA∙IRP1 complex was 52.5 ± 2.1 kJ/mol. The addition of Fe changed appreciably the activation energy for the binding of APP mRNA with IRP1. Moreover, circular dichroism spectroscopy has confirmed further the APP mRNA∙IRP1 complex formation and IRP1 secondary structure change with the addition of APP mRNA. In the interaction between APP mRNA and IRP1, iron promotes structural changes in the APP IRE mRNA∙IRP1 complexes by changing the number of hydrogen bonds and promoting a conformational change in the IRP1 structure when it is bound to the APP IRE mRNA. It further illustrates how IRE stem-loop structure influences selectively the thermodynamics and kinetics of these protein-RNA interactions.

摘要

采用分子对接和多种光谱技术研究了阿尔茨海默病淀粉样前体蛋白 IRE mRNA 与铁调节蛋白之间的相互作用。详细的 APP IRE mRNA·IRP1 分子对接分析表明,有 11 个残基通过氢键相互作用,是相互作用的主要驱动力。荧光结合结果表明,APP IRE mRNA 与 IRP1 之间存在强相互作用,结合亲和力和平均结合位点数分别为 31.3×10-6 M 和 1.0。添加 Fe(anaerobic) 后,APP mRNA·IRP1 的结合亲和力降低了 3.3 倍。此外,APP mRNA·IRP1 相互作用的热力学参数是一个焓驱动和熵有利的过程,具有很大的负 ΔH(-25.7±2.5 kJ/mol)和正 ΔS(65.0±3.7 J/mol·K)。复合物形成的负 ΔH 值表明氢键和范德华力的贡献。铁的加入增加了焓贡献 38%,降低了熵影响 97%。此外,APP IRE mRNA·IRP1 的停流动力学也证实了复合物的形成,其缔合速率(k)和离解速率(k)分别为 341 μM s 和 11 s。Fe 的加入使缔合速率(k)降低了约 3 倍,而离解速率(k)增加了约 2 倍。APP mRNA·IRP1 复合物的活化能为 52.5±2.1 kJ/mol。铁的加入显著改变了 APP mRNA 与 IRP1 结合的活化能。此外,圆二色性光谱进一步证实了 APP mRNA·IRP1 复合物的形成以及随着 APP mRNA 的加入 IRP1 二级结构的变化。在 APP mRNA 和 IRP1 之间的相互作用中,铁通过改变氢键的数量促进 APP IRE mRNA·IRP1 复合物的结构变化,并在与 APP IRE mRNA 结合时促进 IRP1 结构的构象变化。它进一步说明了 IRE 茎环结构如何选择性地影响这些蛋白-RNA 相互作用的热力学和动力学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93ce/10050399/5949ca9c5b75/41598_2023_32073_Fig1_HTML.jpg

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