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铁反应元件(IRE)-mRNA 与铁调节蛋白 1(IRP1)结合的热力学和动力学分析。

Thermodynamic and Kinetic Analyses of Iron Response Element (IRE)-mRNA Binding to Iron Regulatory Protein, IRP1.

机构信息

Department of Chemistry and Biochemistry, Hunter College of the City University of New York, 695 Park Ave, New York, NY, 10065, USA.

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

出版信息

Sci Rep. 2017 Aug 17;7(1):8532. doi: 10.1038/s41598-017-09093-5.

Abstract

Comparison of kinetic and thermodynamic properties of IRP1 (iron regulatory protein1) binding to FRT (ferritin) and ACO2 (aconitase2) IRE-RNAs, with or without Mn, revealed differences specific to each IRE-RNA. Conserved among animal mRNAs, IRE-RNA structures are noncoding and bind Fe to regulate biosynthesis rates of the encoded, iron homeostatic proteins. IRP1 protein binds IRE-RNA, inhibiting mRNA activity; Fe decreases IRE-mRNA/IRP1 binding, increasing encoded protein synthesis. Here, we observed heat, 5 °C to 30 °C, increased IRP1 binding to IRE-RNA 4-fold (FRT IRE-RNA) or 3-fold (ACO2 IRE-RNA), which was enthalpy driven and entropy favorable. Mn (50 µM, 25 °C) increased IRE-RNA/IRP1 binding (K ) 12-fold (FRT IRE-RNA) or 6-fold (ACO2 IRE-RNA); enthalpic contributions decreased ~61% (FRT) or ~32% (ACO2), and entropic contributions increased ~39% (FRT) or ~68% (ACO2). IRE-RNA/IRP1 binding changed activation energies: FRT IRE-RNA 47.0 ± 2.5 kJ/mol, ACO2 IRE-RNA 35.0 ± 2.0 kJ/mol. Mn (50 µM) decreased the activation energy of RNA-IRP1 binding for both IRE-RNAs. The observations suggest decreased RNA hydrogen bonding and changed RNA conformation upon IRP1 binding and illustrate how small, conserved, sequence differences among IRE-mRNAs selectively influence thermodynamic and kinetic selectivity of the protein/RNA interactions.

摘要

IRP1(铁调节蛋白 1)与 FRT(铁蛋白)和 ACO2( aconitase2)IRE-RNA 结合的动力学和热力学性质的比较,无论是有 Mn 还是没有 Mn,都显示出每种 IRE-RNA 特有的差异。IRE-RNA 结构在动物 mRNA 中保守,是非编码的,并结合 Fe 来调节编码的铁稳态蛋白的生物合成速率。IRP1 蛋白结合 IRE-RNA,抑制 mRNA 活性;Fe 减少 IRE-mRNA/IRP1 结合,增加编码蛋白的合成。在这里,我们观察到热(5°C 至 30°C)使 IRP1 与 IRE-RNA 的结合增加了 4 倍(FRT IRE-RNA)或 3 倍(ACO2 IRE-RNA),这是由焓驱动的,有利于熵。Mn(50µM,25°C)使 IRE-RNA/IRP1 结合增加 12 倍(FRT IRE-RNA)或 6 倍(ACO2 IRE-RNA);焓贡献减少约 61%(FRT)或约 32%(ACO2),熵贡献增加约 39%(FRT)或约 68%(ACO2)。IRE-RNA/IRP1 结合改变了活化能:FRT IRE-RNA 为 47.0±2.5kJ/mol,ACO2 IRE-RNA 为 35.0±2.0kJ/mol。Mn(50µM)降低了两种 IRE-RNA 的 RNA-IRP1 结合的活化能。这些观察结果表明,IRP1 结合后,RNA 的氢键减少,RNA 构象发生变化,并说明了在 IRE-mRNA 之间存在的小的、保守的序列差异如何选择性地影响蛋白质/RNA 相互作用的热力学和动力学选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b433/5561112/ecc3b245b415/41598_2017_9093_Fig1_HTML.jpg

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