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首页> 外文期刊>Applied Spectroscopy >Attenuated Total Reflection Infrared Spectroscopy: An Efficient Technique to Quantitatively Determine the Orientation and Conformation of Proteins in Single Silk Fibers
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Attenuated Total Reflection Infrared Spectroscopy: An Efficient Technique to Quantitatively Determine the Orientation and Conformation of Proteins in Single Silk Fibers

机译:衰减全反射红外光谱:一种定量确定单丝纤维中蛋白质取向和构象的有效技术

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Polarized attenuated total reflection (ATR) infrared spectroscopy is an efficient technique to determine the orientation and conformation of a large variety of samples, but it is more difficult to apply to very small specimens such as silk fibers. The Golden Gate single-reflection ATR accessory that uses diamond as an ATR element and a focalized beam turns out to be highly efficient to study quantitatively the orientation and conformation of a single silk fibroin filament of the silkworm Bombyx mori that is about 10 μm in diameter. For orientation measurements, rotating the sample instead of the electric field greatly simplifies the theoretical analysis and keeps the penetration depth of the infrared radiation constant. A sample holder that can be fitted on the ATR accessory has thus been developed to allow accurate rotation of the sample and to obtain spectra with a low, non-damaging, and reproducible pressure on the fiber. To validate the method, spectra have been recorded as a function of the angle θ between the fiber axis and the polarization of the incident radiation. The data have been fitted following the cosine square dependency of the absorbance with respect to the angle θ. The procedure has been applied to the spectral components of the amide I bands, as determined from spectral decomposition. Multiple angle measurements turn out to be quite useful to correct systematic angle errors and validate the accuracy of the curve-fitting parameters of the band decomposition. By using the calculated dichroic ratio, a parameter 〈P2〉 of −0.46 ± 0.01 has been calculated for the antiparallel β-sheets and −0.04 ± 0.02 for the remaining structures. From the orientation-insensitive spectrum A0, the amount of β-sheets has been estimated to 49 ± 3%. The results obtained from only two measurements with the electric field of the incident radiation parallel and perpendicular to the fiber axis has demonstrated that ATR spectroscopy can be used routinely in quantitative studies of the molecular orientation and conformation of macromolecules.
机译:偏振衰减全反射(ATR)红外光谱法是一种有效的技术,可确定各种样品的方向和构象,但要应用于非常小的样品(如丝纤维)则更加困难。事实证明,使用钻石作为ATR元素和聚焦光束的Golden Gate单反射ATR附件非常有效地定量研究直径约10μm的家蚕的单丝纤蛋白丝的取向和构象。 。对于方向测量,旋转样品而不是电场可以极大地简化理论分析,并使红外辐射的穿透深度保持恒定。因此,已经开发出了一种可以安装在ATR附件上的样品架,可以精确地旋转样品并获得具有低,无损伤且可再现的光纤压力的光谱。为了验证该方法,已将光谱记录为纤维轴和入射辐射的偏振之间的角度θ的函数。根据吸光度相对于角度θ的余弦平方依赖性来拟合数据。该方法已应用于酰胺I谱带的光谱成分,由光谱分解确定。事实证明,多角度测量对于纠正系统角度误差和验证谱带分解的曲线拟合参数的准确性非常有用。通过使用计算出的二向色比,反平行β片层的参数

2 〉已计算为-0.46±0.01,其余结构的参数

2 〉为-0.04±0.02。根据取向不敏感光谱A 0 ,β-折叠的数量估计为49±3%。仅通过两次平行于并垂直于光纤轴的入射辐射电场的测量获得的结果表明,ATR光谱可常规用于定量研究大分子的分子取向和构象。

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    《Applied Spectroscopy》 |2008年第9期|956-962|共7页
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