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首页> 外文期刊>Biochemistry >Iron regulatory element and internal loop/bulge structure for ferritin mRNA studied by cobalt(III) hexammine binding, molecular modeling, and NMR spectroscopy
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Iron regulatory element and internal loop/bulge structure for ferritin mRNA studied by cobalt(III) hexammine binding, molecular modeling, and NMR spectroscopy

机译:铁蛋白的铁调节元件和内部环/凸起结构通过钴(III)己氨酸结合,分子建模和NMR光谱研究

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摘要

The ferritin IRE, a highly conserved (96-99% in vertebrates) mRNA translation regulatory element in animal mRNA, was studied by molecular modeling (using MC-SYM and DOCKING) and by NMR spectroscopy. Cobalt(III) hexammine was used to model hydrated Mg2+ IRE isoforms in other mRNAs regulate mRNA translation or stability; all IREs bind IRPs (iron regulatory proteins). A G.C base pair, conserved in ferritin IREs, spans an internal loop/bulge in the middle of an A-helix and, combined with a dynamic G.U base pair, formed a pocket suitable for Co(III) hexammine binding. On the basis of the effects of Co(III) hexammine on the H-1 NMR spectrum and results of automatic docking into the IRE model, the IRE bound Co(III) hexammine at the pocket in the major groove; Mg2+ may bind to the IRE at the same site on the basis of an analogy to Co(III) hexammine and on the Mg2+ inhibition of Cu(phen)(2) cleavage at the site. Distortion of the IRE helix by the internal loop/bulge near a conserved unpaired C required for IRP binding and adjacent to an IRP cross-linking site suggests a role for the pocket in ferritin IRE/IRP interactions. [References: 43]
机译:通过分子建模(使用MC-SYM和DOCKING)和NMR光谱研究了铁蛋白IRE,这是动物mRNA中高度保守的(脊椎动物中96-99%)mRNA翻译调控元件。六乙胺(钴)用于模拟其他mRNA中的水合Mg2 + IRE亚型,调节mRNA的翻译或稳定性。所有IRE都结合IRP(铁调节蛋白)。在铁蛋白IREs中保守的G.C碱基对跨越A螺旋中间的内部环/凸出部分,并与动态G.U碱基对结合,形成了一个适合Co(III)己氨酸结合的口袋。根据Co(III)己氨酸对H-1 NMR光谱的影响和自动对接到IRE模型的结果,IRE在主要凹槽的凹槽中结合了Co(III)己氨酸。 Mg2 +可能基于对Co(III)己胺的类似作用并在该位点对Cu(phen)(2)裂解的Mg2 +抑制作用而在同一位点与IRE结合。 IRE螺旋在IRP结合所需的保守的未配对C附近且与IRP交联位点相邻的内部环/凸起附近扭曲,表明该口袋在铁蛋白IRE / IRP相互作用中发挥了作用。 [参考:43]

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