首页> 外文期刊>Journal of peptide science: An official publication of the European Peptide Society >Conformational analysis of peptide analogues of silkmoth chorion protein segments using CD, NMR and molecular modelling
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Conformational analysis of peptide analogues of silkmoth chorion protein segments using CD, NMR and molecular modelling

机译:使用CD,NMR和分子建模对蚕蛾绒毛膜蛋白片段的肽类似物进行构象分析

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Silkmoth proteins secreted from the follicular cells that surround the oocyte form a large extracellular assembly which is important for protecting and sustaining the structure of the oocyte and the developing embryo. These proteins have been classified into two major families (A and B). Sequence analysis showed conservation of a central domain containing long stretches of six amino acid residue repeats in both families, which have been suggested to be organized in -sheet structures. In this work NMR and CD spectra, as well as molecular calculations, have been used to investigate the conformational properties of two synthetic peptides (A and B), analogues of parts of the central domain of silkmoth chorion proteins of the A and B families, respectively. These peptides consist of three tandem repeats of the six-residue basic motif. Analysis of CD spectra of the two peptides in aqueous solutions and mixtures with organic solvents revealed -sheet and turn structural elements with a percentage higher than 40%. NOESY spectra at low temperatures (263-273 K) show sequential nOe connectivities (i, i+1), indicative of a relative flexibility. The presence of H_(N_i)-H_(N_(i+1)) cross-peaks and medium H_(α_i)-HN_(i+1) connectivities, chemical shift deviations and temperature coefficient data provide, for the first time, experimental evidence that local folded structures around Gly residues occur in peptide segments of chorion proteins in solution. Simulated annealing calculations were used to examine the conformational space of the peptides and to probe the initial steps of amyloid fibril formation in the case of chorion proteins.
机译:从卵母细胞周围卵泡细胞分泌的蚕蛾蛋白形成一个大的细胞外组件,这对于保护和维持卵母细胞和发育中的胚胎的结构很重要。这些蛋白质已被分为两个主要家族(A和B)。序列分析表明,在两个家族中含有长链的六个氨基酸残基重复序列的中央结构域的保守性,已经建议将其组织成片状结构。在这项工作中,NMR和CD光谱以及分子计算已用于研究两个合成肽(A和B)的构象性质,这两个肽是A和B家族蚕蛾绒毛膜蛋白中央结构域的部分类似物,分别。这些肽由六个残基基本基序的三个串联重复序列组成。在水溶液和与有机溶剂的混合物中两种肽的CD光谱分析显示-片状和折返结构元素的百分比高于40%。低温(263-273 K)的NOESY光谱显示出连续的nOe连通性(i,i + 1),表明具有相对的柔韧性。 H_(N_i)-H_(N_(i + 1))交叉峰和中等H_(α_i)-HN_(i + 1)连通性,化学位移偏差和温度系数数据的存在首次为实验提供了条件有证据表明,溶液中绒毛膜蛋白的肽段中存在Gly残基周围的局部折叠结构。模拟退火计算用于检查肽的构象空间,并探讨在绒毛膜蛋白的情况下淀粉样原纤维形成的初始步骤。

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