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Structural characterization of partially folded intermediates of apomyoglobin H64F

机译:apomyoglobin H64F部分折叠的中间体的结构表征

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摘要

We present a detailed investigation of unfolded and partially folded states of a mutant apomyoglobin (apoMb) where the distal histidine has been replaced by phenylalanine (H64F). Previous studies have shown that substitution of His64, located in the E helix of the native protein, stabilizes the equilibrium molten globule and native states and leads to an increase in folding rate and a change in the folding pathway. Analysis of changes in chemical shift and in backbone flexibility, detected via [1H]-15N heteronuclear nuclear Overhauser effect measurements, indicates that the phenylalanine substitution has only minor effects on the conformational ensemble in the acid- and urea-unfolded states, but has a substantial effect on the structure, dynamics, and stability of the equilibrium molten globule intermediate formed near pH 4. In H64F apomyoglobin, additional regions of the polypeptide chain are recruited into the compact core of the molten globule. Since the phenylalanine substitution has negligible effect on the unfolded ensemble, its influence on folding rate and stability comes entirely from interactions within the compact folded or partly folded states. Replacement of His64 with Phe leads to favorable hydrophobic packing between the helix E region and the molten globule core and leads to stabilization of helix E secondary structure and overall thermodynamic stabilization of the molten globule. The secondary structure of the equilibrium molten globule parallels that of the burst phase kinetic intermediate; both intermediates contain significant helical structure in regions of the polypeptide that comprise the A, B, E, G, and H helices of the fully folded protein.
机译:我们目前对突变的apomyoglobin(apoMb)的未折叠和部分折叠状态的详细研究,其中远端组氨酸已被苯丙氨酸(H64F)取代。先前的研究表明,位于天然蛋白质E螺旋中的His64取代可稳定平衡的熔融小球和天然状态,并导致折叠速率增加和折叠途径改变。通过[ 1 H]- 15 N异核核Overhauser效应检测到的化学位移和主链柔性的变化分析表明,苯丙氨酸取代对处于酸和尿素未折叠状态的构象集合,但对在pH 4附近形成的平衡熔融小球中间体的结构,动力学和稳定性有实质性影响。在H64F磷肌红蛋白中,多肽链的其他区域被募集到熔融小球的致密核心。由于苯丙氨酸取代对展开的整体的影响可忽略不计,因此其对折叠速率和稳定性的影响完全来自紧密折叠或部分折叠状态下的相互作用。用Phe代替His64导致在螺旋E区域和熔融小球核心之间有利的疏水性堆积,并导致螺旋E二级结构的稳定和熔融小球的总体热力学稳定。平衡熔融小球的二级结构与爆裂相动力学中间体的二级结构平行。两种中间体均在包含完全折叠蛋白的A,B,E,G和H螺旋的多肽区域中包含明显的螺旋结构。

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