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Water Structure in Proteins in Solid State Studied by Near Infrared Spectroscopy

机译:近红外光谱研究蛋白质中的水结构

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Water adsorption in proteins is the crucial process of protein folding and structure stabilizing. Adsorption of water on proteins can be evaluated by near-infrared spectroscopy, a useful technique for observing combination frequency of a water molecule. In this work, albumin, lysozyme, and silk, were used as models for a-helix and β-pleated sheet proteins. Their NIR spectra during water adsorption process were measured by using an NIR spectrometer equipped with a transflectance accessory. Moreover, the quantitative adsorption of water was determined by gravimetric technique. The results indicate that, there are five different NIR absorptions arise from the OH combination frequencies of water adsorbed by albumin in the 5300-5100 cm~(-1) region. But there are only four absorptions for lysozyme and silk. The OH combination frequencies arising from water molecules in albumin indicate that it acquires free water molecules (5280 cm~(-1)) and adsorbed water molecules through carbonyl-water interactions (5248 and 5160 cm~(-1)) and amino-water interactions (5200 and 5120 cm~(-1)). Interestingly, there is no indication for the presence of free water molecules in lysozyme and silk. Furthermore, the gravimetric results indicate that the rate of water adsorbed follows the order R_(W.Alb)
机译:蛋白质中的水吸附是蛋白质折叠和结构稳定的关键方法。可以通过近红外光谱法评估蛋白质对蛋白质的吸附,这是一种用于观察水分子的组合频率的有用技术。在这项工作中,白蛋白,溶菌酶和丝绸,用作α-螺旋和β-褶皱片蛋白​​的模型。通过使用配备有透射配件的NIR光谱仪测量其在水吸附过程中的NIR光谱。此外,通过重量法测定水的定量吸附。结果表明,在5300-5100cm〜(-1)区中,通过白蛋白吸附的水的OH组合频率出现了五种不同的NIR吸收。但溶菌酶和丝绸只有四个吸收。来自白蛋白中的水分子产生的OH组合频率表明它通过羰基 - 水相互作用(5248和5160cm〜(-1))和氨基 - 水来获取自由水分子(5280cm〜(-1))和吸附的水分子相互作用(5200和5120 cm〜(-1))。有趣的是,溶菌酶和丝绸中没有含有游离水分子的迹象。此外,重量结果表明吸附的水速率遵循顺序R_(W.Alb)

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