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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Tightly winding structure of sequential model peptide for repeated helical region in Samia cynthia ricini silk fibroin studied with solid-state NMR.
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Tightly winding structure of sequential model peptide for repeated helical region in Samia cynthia ricini silk fibroin studied with solid-state NMR.

机译:固态核磁共振研究了辛西亚辛西汀丝素蛋白中重复螺旋区域的连续模型肽的紧密缠绕结构。

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摘要

There are many kinds of silks from silkworms and spiders with different structures and properties, and thus, silks are suitable to study the structure-property relationship of fibrous proteins. Silk fibroin from a wild silkworm, Samia cynthia ricini, mainly consists of the repeated similar sequences by about 100 times where there are alternative appearances of the polyalanine (Ala)(12-13) region and the Gly-rich region. In this paper, a sequential model peptide, GGAGGGYGGDGG(A)(12)GGAGDGYGAG, which is a typical sequence of the silk fibroin, was synthesized, and the atomic-level conformations of Gly residues at the N- and C-terminal ends of the polyalanine region were determined as well as that of the central Ala residue using (13)C 2D spin diffusion solid-state nuclear magnetic resonance (NMR) under off-magic angle spinning. In the model peptide with alpha-helical conformation, the torsion angle of the central Ala residue, the 19th Ala, was determined to be (phi, psi) = (-60 degrees, -50 degrees ), which was a typical alpha-helical structure, but the torsion angles of two Gly residues, the 12th and 25th Gly residues, which are located at the N- and C-terminal ends of the polyalanine region, were determined to be (phi,psi) = (-70 degrees, -30 degrees ) and (phi,psi) = (-70 degrees, -20 degrees ), respectively. Thus, it was observed that the turns at both ends of polyalanine with alpha-helix conformation in the model peptide are tightly wound.
机译:蚕和蜘蛛的蚕丝种类繁多,结构和性质各不相同,因此适合研究纤维蛋白的结构-性质关系。来自野生蚕Samia cynthia ricini的丝素蛋白主要由重复的相似序列组成,约为100倍,其中聚丙氨酸(Ala)(12-13)和富含Gly的区域出现交替出现。本文合成了一种序列模型肽GGAGGGYGGDGG(A)(12)GGAGDGYGAG,它是丝纤蛋白的典型序列,其Gly残基在N和C端的原子级构象在偏角旋转条件下,使用(13)C 2D自旋扩散固态核磁共振(NMR)确定了聚丙氨酸区域以及中央Ala残基的区域。在具有α-螺旋构象的模型肽中,中央Ala残基(第19个Ala)的扭转角确定为(phi,psi)=(-60度,-50度),这是典型的α-螺旋结构,但位于聚丙氨酸区域N和C末端的两个Gly残基(第12和25个Gly残基)的扭转角确定为(phi,psi)=(-70度, -30度)和(phi,psi)=(-70度,-20度)。因此,观察到在模型肽中具有α-螺旋构象的聚丙氨酸两端的匝被紧密缠绕。

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