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Protein secondary structure of Green Lynx spider dragline silk investigated by solid-state NMR and X-ray diffraction

机译:固态NMR和X射线衍射研究青Lyn蜘蛛牵索丝的蛋白质二级结构

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摘要

In this study, the secondary structure of the major ampullate silk from Peucetia viridans (Green Lynx) spiders is characterized by X-ray diffraction and solid-state NMR spectroscopy. From X-ray diffraction measurement, β-sheet nanocrystallites were observed and found to be highly oriented along the fiber axis, with an orientational order, fc ≈ 0.98. The size of the nanocrystallites was determined to be on average 2.5 nm × 3.3 nm × 3.8 nm. Besides a prominent nanocrystalline region, a partially oriented amorphous region was also observed with an fa ≈ 0.89. Two-dimensional 13C–13C through-space and through-bond solid-state NMR experiments were employed to elucidate structure details of P. viridans silk proteins. It reveals that β-sheet nanocrystallites constitutes 40.0 ± 1.2% of the protein and are dominated by alanine-rich repetitive motifs. Furthermore, based upon the NMR data, 18 ± 1% of alanine, 60 ± 2% glycine and 54 ± 2% serine are incorporated into helical conformations.
机译:在这项研究中,通过X射线衍射和固态NMR光谱分析了Peucetia viridans(绿Lyn)蜘蛛的主要壶腹丝的二级结构。通过X射线衍射测量,观察到β-片状纳米晶体,并沿纤维轴高度取向,取向顺序为fc≈0.98。纳米微晶的尺寸确定为平均2.5nm×3.3nm×3.8nm。除了一个显着的纳米晶体区域,还观察到了部分取向的非晶区域,其fa≈0.89。利用二维 13 C– 13 C贯穿空间和贯穿键的固态NMR实验,阐明了绿色假单胞菌丝蛋白的结构细节。结果表明,β-折叠纳米晶体占蛋白质的40.0±1.2%,并以富含丙氨酸的重复基序为主。此外,基于NMR数据,将18±1%的丙氨酸,60±2%的甘氨酸和54±2%的丝氨酸掺入螺旋构象。

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