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Dynamics in the heme geometry of myoglobin induced by the one-electron reduction

机译:单电子还原引起的肌红蛋白血红素几何动力学

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Purpose: As the conformational change of a protein is intimately related with its function in vivo, the determination of its structure and the understanding of its conformational change occurring in physiological condition is of critical importance. In this regard, we have investigated conformational changes in heme moieties of both folded and unfolded myoglobin (Mb) induced by one-electron reduction. Material and methods: The conformational changes of the heme moiety of folded/unfolded metmyoglobin (metMb) induced by one-electron reduction were investigated using the combination of pulse radiolysis and time-resolved resonance Raman (TR3) spectroscopy. Guanidine-HCl (GdHCl) is used as an electron donor and a denaturant for a protein. Mb solutions containing 0.5 and 2.5 M GdHCl (100 mM phosphate buffer, pH 7.0) were prepared for the measurement of transient absorption and TR3 spectra. Results: Upon reduction, the folded metMb, which had a six-coordinated heme geometry linked with a water molecule as a distal ligand, was structurally relaxed to the deoxymyoblobin (deoxyMb) form with a five-coordination heme geometry without water ligand. Meanwhile, the Raman spectrum of an unfolded metMb was almost identical to those of the unfolded deoxyMb formed by the reduction, indicating that both unfolded metMb and deoxyMb had similar heme geometries. Conclusions: The results provided herein show that upon reduction, the folded metMb with a six-coordinated heme geometry was structurally relaxed to deoxyMb with a five-coordination heme geometry, while both unfolded metMb and deoxyMb had a six-coordinated heme geometry linked with water molecule or histidine as a distal ligand.
机译:目的:由于蛋白质的构象变化与其体内功能密切相关,因此确定其结构以及了解其在生理条件下发生的构象变化至关重要。在这方面,我们研究了单电子还原引起的折叠和未折叠的肌红蛋白(Mb)血红素部分的构象变化。材料和方法:使用脉冲辐射分解和时间分辨共振拉曼光谱(TR3)结合研究了单电子还原引起的折叠/未折叠的肌红蛋白(metMb)血红素部分的构象变化。胍盐酸盐(GdHCl)用作电子供体和蛋白质的变性剂。制备了包含0.5和2.5 M GdHCl(100 mM磷酸盐缓冲液,pH 7.0)的Mb溶液,用于测量瞬态吸收和TR3光谱。结果:还原后,折叠的metMb具有六配位的血红素几何形状,并与作为远端配体的水分子相连,在结构上松弛为具有五配位血红素几何形状的脱氧肌红蛋白(deoxyMb)形式,而没有水配体。同时,未折叠的metMb的拉曼光谱与还原形成的未折叠的脱氧Mb的拉曼光谱几乎相同,这表明未折叠的metMb和脱氧Mb的血红素几何形状相似。结论:本文提供的结果表明,还原后,具有六配位血红素几何形状的折叠式metMb在结构上松弛为具有五配位血红素几何形状的脱氧Mb,而未折叠的metMb和deoxyMb均具有与水连接的六配位血红素几何形状分子或组氨酸作为远端配体。

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