首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Water-protein interactions in the molten-globule state of carbonic anhydrase b: an NMR spin-diffusion study.
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Water-protein interactions in the molten-globule state of carbonic anhydrase b: an NMR spin-diffusion study.

机译:碳酸酐酶b的熔融球状状态下的水-蛋白质相互作用:NMR自旋扩散研究。

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摘要

We have used the homonuclear Overhauser effect (NOE) to characterize a model protein: carbonic anhydrase B. We have obtained NOE difference spectra for this protein, centering the on-resonance signals either at the methyl-proton or at the water-proton signals. The spin-diffusion spectra obtained as a function of protein concentration and temperature provide direct evidence of much greater protein-water interaction in the molten-globule state than in the native and denatured states. Furthermore, although the protein loses its gross tertiary structure in both the molten-globule and denatured states, it remains almost as compact in its molten-globule state as it is in the native state. The spin-diffusion spectra, obtained as a function of a variable delay time after the saturation pulse, allowed us to measure the relaxation times of several types of proton in the solution. These spectra contain enough information to distinguish between those water molecules solvating the protein and the free ones present as bulk water.
机译:我们已经使用同核Overhauser效应(NOE)来表征模型蛋白:碳酸酐酶B。我们已经获得了该蛋白的NOE差异谱,将共振信号集中在甲基质子或水质子信号上。作为蛋白质浓度和温度的函数获得的自旋扩散光谱提供了直接证据,证明在熔融球状状态下蛋白质-水的相互作用要比在天然和变性状态下大得多。此外,尽管该蛋白质在熔融小球和变性状态下都丧失了其总的三级结构,但它在熔融小球状态下的致密性几乎与天然状态一样。根据饱和脉冲后可变延迟时间获得的自旋扩散光谱,使我们能够测量溶液中几种类型质子的弛豫时间。这些光谱包含足够的信息,以区分使蛋白质溶解的水分子和作为散装水存在的游离分子。

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