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首页> 外文期刊>Macromolecules >High-resolution C-13 CP/MAS NMR study on structure and structural transition of Antheraea pernyi silk fibroin containing poly(L-alanine) and gly-rich regions
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High-resolution C-13 CP/MAS NMR study on structure and structural transition of Antheraea pernyi silk fibroin containing poly(L-alanine) and gly-rich regions

机译:含聚L-丙氨酸和富含甘氨酸区域的per蚕丝丝蛋白的结构和结构转变的高分辨率C-13 CP / MAS NMR研究

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The structure and structural transition of silk fibroin from a wild silkworm Antheraea pernyi (A. pernyi), whose amino acid sequence consists of poly(L-alanine) (PLA) and a Gly-rich region, were studied with solid-state C-13 cross-polarization magic angle spinning (CP/MAS) NMR. As such, there has been limited information on the inherent "conformationally flexible" Gly-rich region of A. pernyi, presumably due to lack of an appropriate analytical technique required to contribute for the understanding of unique structural properties. The effective use of conformation-dependent C-13 NMR chemical shifts of isotopically labeled silk sample may overcome such limitations and prove valuable the structural analysis. Thus, the C-alpha and C-beta carbons of Ser residue, C-beta carbon of Tyr residue, and the CO carbon of Gly residue were C-13-isotope-labeled, and the conformation-dependent C-13 chemical shifts of these residues were used for elucidating the conformation. In the silk fibroin film prepared from the silk gland 65% of Ser residues are in the alpha-helical state. These Ser residues with alpha-helix form can be assigned to those located at the N-terminal of PLA and are considered to be incorporated into the alpha-helix of PLA. The Tyr and other Ser residues take the random coil form. The structural transition from alpha-helix to beta-sheet in the PLA region occurs by immersing the film in 3:2 methanol-water mixture, but 20% of Ala residues still remain as an alpha-helix. Eighty percent of the Ser residues take the beta-sheet, including a small amount of random coil form. The Gly carbonyl carbon peaks shift to a higher field by 1.4 ppm (172.3-170.9 ppm) when the helix to beta-sheet transition of PLA region occurs, indicating that the structural change from random coil to beta-sheet structure occurs in the Gly residues although the distribution in the conformation is large, as judged from the broad Gly C=O peak. Most of the Tyr residue remains as a random coil after the structural transition of the, PLA region. [References: 41]
机译:用固态C-研究了野生蚕蚕丝素的结构和结构转变,该蚕的氨基酸序列由聚(L-丙氨酸)(PLA)和富含甘氨酸的区域组成。 13交叉极化魔角旋转(CP / MAS)NMR。同样地,关于pernyi的固有的“构型灵活的”富含Gly的区域的信息有限,大概是由于缺乏有助于理解独特的结构特性所需的适当分析技术。有效利用同位素标记的丝绸样品的依赖构象的C-13 NMR化学位移可以克服此类限制,并证明其在结构分析中很有价值。因此,Ser残基的C-alpha和C-beta碳,Tyr残基的C-beta碳和Gly残基的CO碳被C-13同位素标记,构象依赖的C-13化学位移为这些残基用于阐明构象。在由丝腺制备的丝心蛋白膜中,65%的Ser残基处于α螺旋状态。这些具有α-螺旋形式的Ser残基可以被分配给位于PLA的N-末端的那些,并且被认为并入了PLA的α-螺旋中。 Tyr和其他Ser残基采用无规卷曲形式。通过将膜浸入甲醇与水的3:2混合物中,可实现PLA区域中从α-螺旋到β-折叠的结构转变,但是20%的Ala残基仍保留为α-螺旋。 80%的Ser残基带有β-折叠,包括少量的无规卷曲形式。当发生PLA区域的螺旋向β-折叠转变时,Gly羰基碳峰移至更高的场1.4 ppm(172.3-170.9 ppm),表明在Gly残基中发生了从无规卷曲到β-折叠结构的结构变化从宽的Gly C = O峰判断,尽管构象中的分布大。在PLA区域发生结构转变后,大多数Tyr残基仍保留为无规卷曲。 [参考:41]

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