首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Two-Dimensional Near-Infrared Spectroscopy Study of Human Serum Albumin in Aqueous Solutions: Using Overtones and Combination Modes to Monitor Temperature-Dependent Changes in the Secondary Structure
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Two-Dimensional Near-Infrared Spectroscopy Study of Human Serum Albumin in Aqueous Solutions: Using Overtones and Combination Modes to Monitor Temperature-Dependent Changes in the Secondary Structure

机译:水溶液中人血清白蛋白的二维近红外光谱研究:使用泛音和组合模式监测二级结构中温度相关的变化

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摘要

FT-NIR spectra were measured for human serum albumin (HSA) in aqueous solutions with concentrations of 1.0, 2.0, 3.0, 4.0, and 5.0 wt % over a temperature range of 45-80 ℃. Concentration-perturbed two-dimensional (2D) correlation spectra were calculated for the spectra in the 7500-5500 cm~(-1) and 4900-4200 cm~(-1) regions at different temperatures. To investigate temperature-induced changes in the secondary structure and hydration, power spectra and slice spectra were calculated from the synchronous and asynchronous spectra, respectively. In the power spectra, a band near 4600 cm~(-1) due to the combination mode of amide B and amide II (amide B/II) shows an abroup shift by 5 cm~(-1) between 58 and 60 ℃, indicating that the secondary structure of HSA changes suddenly near 60 ℃. Both the power and slice spectra in the 7500-5500 cm~(-1) region provide explicit evidence that the hydration changes markedly near 60 ℃. A comparison of the temperature-dependent frequency shifts between the band near 4600 cm~(-1) due to amide B/II and that near 7000 cm~(-1) due to the combination mode of water reveals that the protein unfolding occurs almost in parallel with the change in the hydration. The present study demonstrates that the overtone and combination modes are very useful in monitoring subtle changes in protein dynamics.
机译:在45-80℃的温度范围内,以1.0、2.0、3.0、4.0和5.0 wt%的浓度测量人血清白蛋白(HSA)的FT-NIR光谱。计算了在不同温度下7500-5500 cm〜(-1)和4900-4200 cm〜(-1)区域中光谱的浓度扰动二维(2D)相关光谱。为了研究温度引起的二级结构和水合变化,分别从同步和异步光谱计算了功率谱和切片谱。在功率谱中,由于酰胺B和酰胺II(酰胺B / II)的结合模式,在4600 cm〜(-1)附近的一条带显示出在58至60℃之间的5 cm〜(-1)的abroup位移,表明HSA的二级结构在60℃附近突然改变。在7500-5500 cm〜(-1)区域的功率谱和切片谱均提供了明确的证据,表明60℃附近的水合变化明显。对酰胺B / II引起的4600 cm〜(-1)附近的波段与水的结合方式引起的7000 cm〜(-1)附近的波段之间随温度变化的频率变化的比较表明,蛋白质解折叠几乎发生与水化变化同时发生。本研究表明,泛音和组合模式对于监视蛋白质动力学的细微变化非常有用。

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