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Intermolecular beta-sheet results from trifluoroethanol-induced nonnative alpha-helical structure in beta-sheet predominant proteins: Infrared and circular dichroism spectroscopic study

机译:分子间β-折叠的结果来自三氟乙醇诱导的β-折叠主要蛋白质中的非天然α-螺旋结构:红外和圆二色性光谱研究

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2,2,2-Trifluoroethanol (TFE)-induced nonnative alpha-helical structure in peptides and proteins has been extensively studied with circular dichroism (CD) spectroscopy. However, to date, complementary information from infrared (IR) spectroscopy has not been reported. Using both IR and CD spectroscopy, we demonstrate here that the TFE-induced nonnative alpha-helical structure in two beta-sheet-predominant proteins, beta-lactoglobulin and alpha-chymotrypsin, is unstable in comparison with those found in the alpha-helix-predominant proteins myoglobin and cytochrome c under identical conditions. IR spectra showed that, immediately after dissolution of the beta-sheet proteins in 50% (v/v) TFE, a strong amide I band component appears at 1654 cm(-1) in H2O and at 1650 cm(-1) in D2O, which is ascribed to alpha-helical structure. However, the intensities of the alpha-helical bands decrease as a function of time, concomitant with the appearance of two new band components near 1620 and 1695 cm(-1) in H2O and 1612 and 1684 cm(-1) in D2O, a typical IR spectral pattern for an intermolecular beta-sheet aggregate. Clear gels begin to develop within 30 min. No similar spectral changes were observed for the alpha-helical proteins. CD spectra suggested initially that the TFE-induced alpha-helix was retained in the gelled state. However, further analysis of the spectra, and Gaussian function modeling with basic spectra, indicated that the apparent alpha-helix signal was actually due to a combination of signals from intermolecular beta-sheet and residual alpha-helix. These results indicate that the TFE-induced nonnative a-helix structure in predominantly beta-sheet proteins is unstable and readily converts to an intermolecular beta-sheet aggregate. (C) 1998 Academic Press. [References: 33]
机译:肽和蛋白质中的2,2,2-三氟乙醇(TFE)诱导的非天然α螺旋结​​构已通过圆二色性(CD)光谱进行了广泛研究。但是,迄今为止,尚未报道来自红外(IR)光谱的补充信息。使用IR和CD光谱,我们在这里证明,与在α-螺旋-相同条件下的主要蛋白质肌红蛋白和细胞色素c。红外光谱表明,将β-折叠蛋白溶解在50%(v / v)TFE中后,在H2O中的1654 cm(-1)和D2O中的1650 cm(-1)处出现了很强的酰胺I带组分,归因于alpha螺旋结构。但是,α-螺旋带的强度随时间而降低,与在H2O中的1620和1695 cm(-1)附近以及在D2O中的1612和1684 cm(-1)附近出现两个新的带分量相伴而生。分子间β-折叠聚集体的典型红外光谱图。 30分钟内开始形成透明凝胶。对于α-螺旋蛋白没有观察到类似的光谱变化。 CD光谱最初表明,TFE诱导的α螺旋保留在凝胶状态。然而,对光谱的进一步分析以及使用基本光谱的高斯函数建模表明,表观的α-螺旋信号实际上是由于分子间β-折叠和残余α-螺旋信号的组合。这些结果表明,TFE诱导的主要β-折叠蛋白中的非天然a-螺旋结构是不稳定的,很容易转化为分子间的β-折叠聚集体。 (C)1998年学术出版社。 [参考:33]

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