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