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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Probing the Role of Hydration in the Unfolding Transitions of Carbonmonoxy Myoglobin and Apomyoglobin
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Probing the Role of Hydration in the Unfolding Transitions of Carbonmonoxy Myoglobin and Apomyoglobin

机译:探讨水合在碳单氧肌红蛋白和肌红蛋白的展开转变中的作用

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We show that the equilibrium unfolding transition of horse carbonmonoxy myoglobin monitored by the stretching vibration of the CO ligand, a local environmental probe, is very sharp and, thus, quite different from those measured by global conformational reporters. In addition, the denatured protein exhibits an A0-like CO band. We hypothesize that this sharp transition reports penetration of water into the heme pocket of the protein. Parallel experiments on horse apomyoglobin, wherein an environment-sensitive fluorescent probe, nile red, was used, also reveals a similar putative hydration event. Given the importance of dehydration in protein folding and also the recent debate over the interpretation of probe-dependent unfolding transitions, these results have strong implications on the mechanism of protein folding.
机译:我们显示,通过局部环境探针CO配位体的拉伸振动监测的马碳酰氧基肌红蛋白的平衡展开过渡非常尖锐,因此与通过整体构象报道分子测得的差异非常大。另外,变性的蛋白质表现出A0样CO带。我们假设这种急剧的转变表明水渗透到蛋白质的血红素囊中。在使用了对环境敏感的荧光探针尼罗红的马磷肌红蛋白上进行的平行实验也显示出类似的水合事件。鉴于脱水在蛋白质折叠中的重要性以及最近对探针依赖性解折叠转变的解释的争论,这些结果对蛋白质折叠的机理具有重要意义。

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