首页> 外文OA文献 >Intermolecular Packing in B. mori Silk Fibroin: Multinuclear NMR Study of the Model Peptide (Ala-Gly)15 Defines a Heterogeneous Antiparallel Antipolar Mode of Assembly in the Silk II Form
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Intermolecular Packing in B. mori Silk Fibroin: Multinuclear NMR Study of the Model Peptide (Ala-Gly)15 Defines a Heterogeneous Antiparallel Antipolar Mode of Assembly in the Silk II Form

机译:家蚕丝素蛋白中的分子间包装:模型肽(ala-Gly)15的多核NmR研究定义了silk II形式的非均匀反平行反极性组装模式

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摘要

We have previously suggested that crystalline Bombyx mori silk in silk II form (the silk structure after spinning) is not a simple antiparallel β-sheet but is intrinsically heterogeneous. Using the peptide (AG)15, we have obtained the first fully assigned high resolution solid state 1H NMR spectrum. Distinct heterogeneity was observed, in both 1H and 13C CP/MAS signals. Based on these results, a new model is proposed that contains two different packing arrangements of antiparallel β-sheets. The structures were energetically minimized by CASTEP calculation and used to calculate the solid state 1H, 13C, and 15N NMR chemical shifts using the GIPAW method. This new model was supported by good agreement between the calculated and observed 1H, 13C, and 15N chemical shifts and relative 1H–1H proximities obtained from 2D 1H DQMAS experiments. We conclude that the intermolecular packing of B. mori silk fibroin has been finally resolved.
机译:我们以前曾提出,丝绸II形式的结晶家蚕丝(纺丝后的丝绸结构)不是简单的反平行β折叠,而是本质上是异质的。使用肽(AG)15,我们获得了第一个完全分配的高分辨率固态1H NMR光谱。在1H和13C CP / MAS信号中均观察到明显的异质性。基于这些结果,提出了一种新模型,该模型包含两个不同的反平行β-折叠薄片排列方式。通过CASTEP计算,将结构能量最小化,并使用GIPAW方法将其用于计算固态1H,13C和15N NMR化学位移。该新模型得到了计算的和观察到的1H,13C和15N化学位移与从2D 1H DQMAS实验获得的相对1H-1H近似值的良好一致性的支持。我们得出的结论是,桑蚕丝素蛋白的分子间堆积已得到最终解决。

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