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首页> 外文期刊>Macromolecules >Conformation of Crystalline and Noncrystalline Domains of [3-C-13]Ala-, [3-C-13]Ser-, and [3-C-13]Tyr-Bombyx mori Silk Fibroin in a Hydrated State Studied with C-13 DD/MAS NMR
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Conformation of Crystalline and Noncrystalline Domains of [3-C-13]Ala-, [3-C-13]Ser-, and [3-C-13]Tyr-Bombyx mori Silk Fibroin in a Hydrated State Studied with C-13 DD/MAS NMR

机译:研究了水合态的[3-C-13] Ala-,[3-C-13] Ser-和[3-C-13] Tyr-Bombyx mori丝素蛋白的结晶域和非结晶域的构象DD / MAS NMR

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摘要

Silk fibroin fiber is a well-known textile, but is also used as biomaterial that is of interest for use in a variety of applications, usually in a hydrated state. Thus, the determination of the hydrated silk fibroin structure is important for understanding the function and in designing novel biomaterials. In this work, C-13 dipolar decoupling/magic angle spinning NMR was used to determine the local conformation of [3-C-13]Ala-, [3-C-13]Ser-, and [3-C-13]Tyr -Bombyx mori silk fibroin in a hydrated state. Ser residues are present predominantly in the crystalline domains, Tyr predominantly in the noncrystalline domains and Ala residues in both domains. The fraction of beta-sheet and two random coil distributions with fast and slow chain dynamics could be determined for all these residues by C-13 conformation-dependent chemical shift. The fraction of beta-sheet of these residues in the fiber and the crystalline fraction did not change significantly before and after hydration. The fraction of random coil conformations with fast motion in total random coil fraction of the hydrated fiber was 25%, 22%, and 11% for Ala, Ser, and Tyr residues, respectively. Thus, Tyr residues tend to hydrate relatively little among these residues. This information is the first detailed study of the effects of hydration on site-specific crystalline and noncrystalline domains of silk.
机译:丝素蛋白纤维是众所周知的纺织品,但也用作生物材料,通常在水合状态下可用于多种应用。因此,水合丝素蛋白结构的确定对于理解功能和设计新型生物材料很重要。在这项工作中,使用C-13偶极解耦/魔角旋转NMR来确定[3-C-13] Ala-,[3-C-13] Ser-和[3-C-13]的局部构象Tyr-蚕丝丝素蛋白处于水合状态。 Ser残基主要存在于结晶域中,Tyr主要存在于非结晶域中,而Ala残基则同时存在于两个域中。可以通过C-13构象依赖性化学位移来确定所有这些残基的β-折叠比例和具有快速和慢速链动力学的两个随机线圈分布。这些残留物在纤维中的β-折叠部分和结晶部分在水合之前和之后均无明显变化。对于Ala,Ser和Tyr残基,在水合纤维的总随机卷曲分数中,具有快速运动的随机卷曲构象的分数分别为25%,22%和11%。因此,在这些残基中,Tyr残基倾向于水合相对较少。该信息是水合作用对丝绸的位点特定结晶和非结晶域影响的首次详细研究。

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