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Heat-induced secondary structure and conformation change of bovine serum albumin investigated by Fourier transform infrared spectroscopy

机译:傅里叶变换红外光谱法研究牛血清白蛋白的热诱导二级结构和构象变化

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摘要

Fourier transform infrared (FT-IR) spectra were measured for an aqueous solution (pD = 5.40) of defatted monomer bovine serum albumin (BSA) over a temperature range of 25-90 degreesC to investigate temperature-induced secondary structure and conformation changes. The curve fitting method combined with the Fourier self-deconvolution technique allowed us to explore details of the secondary structure and conformation changes in defatted BSA. Particularly striking in the FT-IR spectra was an observation of the formation of an irreversible intermolecular beta-sheet of BSA on heating above 70 degreesC. A band at 1630 cm(-1) in the spectra was assigned to short-segment chains connecting alpha-helical segments. The transition temperature for the short-segment chains connecting alpha-helical segments is lower by 17-18 degreesC, when compared to those of the alpha-helix, turn, and intermolecular beta-sheet structures of BSA, suggesting that the alpha-helix and turn structures of BSA are cooperatively denatured on heating. Moreover, the results give an important feature in heat-induced denaturation of BSA that the conformation changes occur twice around both 57 and 75 degreesC. The appearance of two peaks is interpreted by the collapse of the N-terminal BSA domain due to the crevice in the vicinity between domains I and II at low-temperature transition and by the change in cooperative unit composed of the other two BSA domains at high-temperature transition.
机译:在25-90摄氏度的温度范围内对脱脂单体牛血清白蛋白(BSA)的水溶液(pD = 5.40)进行了傅里叶变换红外(FT-IR)光谱测量,以研究温度诱导的二级结构和构象变化。曲线拟合方法与傅立叶自解卷积技术相结合,使我们能够探索脱脂BSA的二级结构和构象变化的细节。 FT-IR光谱中特别引人注目的是观察到在70摄氏度以上加热时BSA不可逆分子间β-折叠的形成。光谱中1630 cm(-1)的谱带分配给连接α-螺旋片段的短片段链。与BSA的α螺旋,转角和分子间β折叠结构相比,连接α螺旋片段的短链的转变温度降低了17-18℃,这表明α螺旋和BSA的匝结构在加热时协同变性。而且,该结果在BSA的热诱导变性中具有重要特征,即在57℃和75℃下均发生两次构象变化。两个峰的出现是由于低温转变时结构域I和II之间附近的缝隙引起的N末端BSA结构域的坍塌以及高温时由其他两个BSA结构域组成的协作单元的变化所解释的-温度转变。

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