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Sericin Promotes Fibroin Silk I Stabilization Across a Phase-Separation.

机译:丝胶蛋白促进丝素蛋白I在相分离中稳定化。

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摘要

Natural silk spinning offers several advantages over the synthetic fiber spinning, although the underlying mechanisms of this process are yet to be fully elucidated. Silkworm silks, specifically B. mori, comprise two main proteins: fibroin, which forms the fiber, and sericin, a coextruded coating that acts as a matrix in the resulting nonwoven composite cocoon. To date, most studies have focused on fibroin's self-assembly and gelation, with the influence of sericin during spinning receiving little to no attention. This study investigates sericin's effects on the self-assembly of fibroin via their natural phase-separation. Through changes in sample opacity, FTIR, and XRD, we report that increasing sericin concentration retards the time to gelation and β-sheet formation of fibroin, causing it to adopt a Silk I conformation. Such findings have important implications for both the natural silk spinning process and any future industrial applications, suggesting that sericin may be able to induce long-range conformational and stability control in silk fibroin, while being in a separate phase, a factor that would facilitate long-term storage or silk feedstocks.
机译:天然丝纺丝比合成纤维纺丝具有一些优势,尽管该过程的潜在机理尚待充分阐明。蚕丝,特别是桑蚕,包含两个主要蛋白质:形成纤维的丝素和丝胶蛋白,一种共挤出的涂层,在所得的非织造复合茧中用作基质。迄今为止,大多数研究都集中在纤维蛋白的自组装和凝胶化上,丝胶在纺丝过程中的影响几乎没有受到关注。这项研究调查了丝胶蛋白通过其自然相分离对丝蛋白的自组装的影响。通过改变样品的不透明度,FTIR和XRD,我们报告说,丝胶蛋白浓度的增加延迟了丝蛋白的胶凝时间和β-折叠的形成,从而导致其采用Silk I构象。这些发现对天然丝纺工艺和任何未来工业应用都具有重要意义,表明丝胶蛋白可能在单独的阶段就能够诱导丝素蛋白的长期构象和稳定性控制,这是促进长丝蛋白生长的一个因素。长期储存或丝绸原料。

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