1 College of Materials and Textile, Zhejiang Sci-Tech University, Hangzhou, China.
2 Key Laboratory of Advanced Textile Materials and Manufacturing Technology, Ministry of Education, Zhejiang Sci-Tech University, Hangzhou, China.
Appl Spectrosc. 2017 Aug;71(8):1785-1794. doi: 10.1177/0003702817706368. Epub 2017 Jul 18.
The mechanism of β-sheet crystallization in silk fibroin remains unclear, due to the incomplete information of protein assembly and structural state. The emerging terahertz (THz) spectroscopy (<10 THz) has been taken as an important tool to detect new aspects of biomolecular structure and is used for the first time to analyze the methanol-water (MeOH) induced structural changes of Bombyx mori silk fibroin. Mid-infrared spectroscopy (IR) and X-ray diffraction (XRD) results show that silk fibroin initially exists in a typical silk I form and reassemble into a predominant silk II (antiparallel β-sheet crystal) structure after MeOH treatment. The samples treated with MeOH-HO mixed solutions show a predominant silk I structure without any silk-II-related peaks. As the MeOH concentration approaches 40 vol%, the absorbance of the β-sheet-related IR bands and the XRD peaks gradually increase, indicating a formation of β-sheet crystal during this process. THz spectrum shows the absorption capacity below 3 THz as well as the absorbance at 5.1 THz and 7.9 THz is indeed affected by the MeOH-HO treatment, implying a MeOH-HO-dependent change of intermolecular H-bonds in silk fibroin. The THz spectrum for silk fibroin gives additional information to the existing studies on the MeOH-HO induced β-sheet crystallization of silk fibroin, which may help us understanding the structural changes of natural silk.
丝素β-折叠结晶的机制尚不清楚,这是由于蛋白质组装和结构状态的信息不完整。新兴的太赫兹(THz)光谱(<10 THz)已被用作检测生物分子结构新方面的重要工具,并首次用于分析甲醇-水(MeOH)对家蚕丝素纤维结构的诱导变化。中红外光谱(IR)和 X 射线衍射(XRD)结果表明,丝素纤维最初存在于典型的丝素 I 形式,在 MeOH 处理后重新组装成主要的丝素 II(反平行β-折叠晶体)结构。用 MeOH-HO 混合溶液处理的样品显示出主要的丝素 I 结构,没有任何丝素 II 相关的峰。当 MeOH 浓度接近 40 vol%时,β-折叠相关的 IR 带和 XRD 峰的吸光度逐渐增加,表明在此过程中形成了β-折叠晶体。THz 光谱显示在 3 THz 以下的吸收能力,以及在 5.1 THz 和 7.9 THz 的吸收确实受到 MeOH-HO 处理的影响,这意味着丝素纤维中分子间氢键发生了 MeOH-HO 依赖性的变化。丝素纤维的太赫兹光谱为丝素纤维的 MeOH-HO 诱导β-折叠结晶的现有研究提供了额外的信息,这可能有助于我们理解天然丝的结构变化。