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Effects of pH and calcium ions on the conformational transitions in silk fibroin using 2D Raman correlation spectroscopy and C-13 solid-state NMR

机译:pH与钙离子对使用2D拉曼相关光谱法和C-13固态NMR丝素蛋白构象过渡的影响

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Silk fibroin exists in a number of different states, such as silk I and silk 11, with different properties largely defined by differences in secondary structure composition. Numerous attempts have been made to control the transitions from silk I to silk II in vitro to produce high-performance materials. Of all the factors influencing the structural compositions, pH and some metal ions play important roles. This paper focuses on the influence of pH and Call ions on the conformational transition from silk I to silk II in regenerated (redissolved) Bombyx mori fibroin. One- and two-dimensional correlation Raman spectroscopy was used to describe qualitatively the transitions in secondary structure in silk I, silk II, and their intermediates as pH and Ca2+ ion concentration were changed, while C-13 cross polarization magic angle spinning (CP/MAS) solid-state NMR was used to quantify these changes. We showed that conditions (low pH, pH 5.2; a defined range of Ca2+ ion concentrations; gradual water removal) that mimic natural silk spinning promote the formations of beta-sheet and distorted beta-sheet characteristic of silk II or silk II-related intermediate. In contrast, higher pH (pH 6.9-8.0) and higher Ca2+ ion concentrations maintain "random coil" conformations typical of silk I or silk I-related intermediate. These results help to explain why the natural silk spinning process is attended by a reduction in pH from 6.9 to 4.8 and a change in the Ca2+ ion concentration in the gland lumen as fibroin passes from the posterior division through the secretory pathway to the anterior division.
机译:丝素蛋白存在于许多不同的状态,如丝绸I和丝绸11,具有不同的性质,主要由二级结构组合物的差异定义。已经进行了许多尝试来控制丝绸I到丝绸II的过渡,以产生高性能材料。在影响结构组合物的所有因素中,pH和一些金属离子发挥重要作用。本文重点介绍了pH和呼叫离子对从丝绸I对丝绸II的构象过渡进行再生(重新溶解)Bombyx Mori Fibroin。使用单尺寸相关拉曼光谱来描述丝I,丝绸II的二级结构中的转变,作为pH和Ca2 +离子浓度,而C-13交叉偏振魔角旋转(CP / MAS)固态NMR用于量化这些变化。我们展示了条件(低pH,pH 5.2;定义范围的Ca2 +离子浓度;逐渐除水分),模拟天然丝绸纺丝促进丝网II或丝绸II相关中间体的β-片和扭曲的β-板材特征的形成。相反,更高的pH(pH6.9-8.0)和更高的Ca2 +离子浓度维持丝网I或丝绸I相关中间体的典型“无随机线圈”构象。这些结果有助于解释为什么天然丝纺过程从6.9至4.8的降低参加,并且随着纤维素通过分泌路径的后剖去的纤维素通过分泌途径的腺体腔内的Ca2 +离子浓度的变化。

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