首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Methanol-induced conformation transition of gland fibroin monitored by FTIR spectroscopy and terahertz spectroscopy
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Methanol-induced conformation transition of gland fibroin monitored by FTIR spectroscopy and terahertz spectroscopy

机译:FTIR光谱和太赫兹光谱监测甲醇诱导的腺纤蛋白构象转变

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Silk fibroin extracted from the gland of Bombyx mori silkworm is employed as an ideal system to investigate its conformation transition in methanol/D_2O solution. The transition process was monitored by Fourier transform infrared (FTIR) spectroscopy coupled with terahertz time domain spectroscopy (THz-TDS). Analysis of FTIR spectra suggests that, with increasing time of treatment, an increasing band at 1634 cm~(-1) is observed indicating the formation of b-pleated sheets coincident with the loss of intensity of a band at 1673 cm~(-1) indicating decrease of the random coil structure. In addition, there is a burst phase of 33% occurring during the first 2 minutes when the gland fibroin membranes are immersed into methanol/D_2O solution. THz spectra present distinct features for conformations of silk fibroin, in combination with the results obtained from FTIR; the peaks observed at 1.54 THz (51 cm~(-1)), 1.67 THz (55 cm~(-1)), and 1.84 THz (61 cm~(-1)) can be attributed to a β-pleated sheet, α-helix, and random coil, respectively. Intensity change of bands centered at 1.54 THz and 1.84 THz confirms the formation of the β-pleated sheet and the disappearance of the random coil. Kinetic curves obtained from THz spectra indicate that the methanol-induced conformation transition from the random coil to the β-pleated sheet is fitted with an exponential function. The results suggest that THz-TDS presents great potential as a complementary approach in studying the secondary structure of a protein, providing significant insight into the silk-spinning process in vivo.
机译:从家蚕腺体提取的丝素蛋白被用作研究其在甲醇/ D_2O溶液中构象转变的理想系统。过渡过程通过傅里叶变换红外(FTIR)光谱和太赫兹时域光谱(THz-TDS)进行监测。 FTIR光谱分析表明,随着处理时间的增加,观察到1634 cm〜(-1)处的谱带增加,表明b褶皱片的形成与1673 cm〜(-1)谱带强度的丧失相吻合。 )表示随机线圈结构的减少。另外,当将腺纤蛋白膜浸入甲醇/ D_2O溶液中的前2分钟内,发生了33%的爆发期。太赫兹光谱与真丝纤维蛋白的构象结合了从FTIR获得的结果,呈现出明显的特征。在1.54 THz(51 cm〜(-1)),1.67 THz(55 cm〜(-1))和1.84 THz(61 cm〜(-1))处观察到的峰可以归因于β褶皱片, α-螺旋和随机线圈。以1.54 THz和1.84 THz为中心的谱带强度变化证实了β褶皱片的形成和无规卷曲的消失。从太赫兹光谱获得的动力学曲线表明,由甲醇诱导的从无规卷曲物到β折叠片的构象转变具有指数函数。结果表明,THz-TDS在研究蛋白质的二级结构方面具有巨大的潜力,可以作为一种补充方法,为体内丝纺过程提供重要见识。

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