首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Characterization of Intermolecular Structure of β2-Microglobulin Core Fragments in Amyloid Fibrils by Vacuum-Ultraviolet Circular Dichroism Spectroscopy and Circular Dichroism Theory
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Characterization of Intermolecular Structure of β2-Microglobulin Core Fragments in Amyloid Fibrils by Vacuum-Ultraviolet Circular Dichroism Spectroscopy and Circular Dichroism Theory

机译:真空-紫外圆二色谱和圆二色理论表征淀粉样蛋白中β2-微球蛋白核心片段的分子间结构

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摘要

Intermolecular structures are important factors for understanding the conformational properties of amyloid fibrils. In this study, vacuum-ultraviolet circular dichroism (VUVCD) spectroscopy and circular dichroism (CD) theory were used for characterizing the intermolecular structures of β2-microglobulin (β2m) core fragments in the amyloid fibrils. The VUVCD spectra of β2m_(20-41), β2m_(21-31), and βm_(21-29) fragments in the amyloid fibrils exhibited characteristic features, but they were affected not only by the backbone conformations but also by the aromatic side-chain conformations. To estimate the contributions of aromatic side-chains to the spectra, the theoretical spectra were calculated from the simulated structures of β2m_(21-29) amyloid fibrils with various types of β-sheet stacking (parallel or antiparallel) using CD theory. We found that the experimental spectrum of β2m_(21-29) fibrils is largely affected by aromatic-backbone couplings, which are induced by the interaction between transitions within the aromatic and backbone chromophores, and these couplings are sensitive to the type of stacking among the β-sheets of the fibrils. Further theoretical analyses of simulated structures incorporating mutated aromatic residues suggested that the β2m_(21-29) fibrils are composed of amyloid accumulations in which the parallel β-sheets stack in an antiparallel manner and that the characteristic Phe—Tyr interactions among the β-sheet stacks affect the aromatic-backbone coupling. These findings indicate that the coupling components, which depend on the characteristic intermolecular structures, induce the spectral differences among three fragments in the amyloid fibrils. These advanced spectral analyses using CD theory provide a useful method for characterizing the intermolecular structures of protein and peptide fragment complexes.
机译:分子间结构是理解淀粉样蛋白原纤维构象性质的重要因素。在这项研究中,真空紫外圆二色性(VUVCD)光谱和圆二色性(CD)理论用于表征淀粉样淀粉样蛋白中β2-微球蛋白(β2m)核心片段的分子间结构。淀粉样原纤维中β2m_(20-41),β2m_(21-31)和βm_(21-29)片段的VUVCD光谱具有特征性特征,但不仅受到主链构象的影响,还受到芳香族分子的影响。 -链构象。为了估计芳族侧链对光谱的贡献,使用CD理论从具有各种类型的β-折叠堆叠(平行或反平行)的β2m_(21-29)淀粉样原纤维的模拟结构中计算了理论光谱。我们发现,β2m_(21-29)原纤维的实验光谱在很大程度上受芳香族主链偶联的影响,芳香族主链偶联是由芳香族和主链发色团之间的跃迁之间的相互作用引起的,并且这些偶联对分子之间的堆积类型敏感。 β-片状的原纤维。对包含突变的芳香族残基的模拟结构的进一步理论分析表明,β2m_(21-29)原纤维由淀粉样蛋白堆积组成,其中平行的β-折叠以反平行的方式堆叠,并且β-折叠之间的特征性Phe-Tyr相互作用烟囱会影响芳族骨干的偶联。这些发现表明,取决于特征分子间结构的偶联组分在淀粉样蛋白原纤维的三个片段之间引起光谱差异。这些使用CD理论的高级光谱分析为表征蛋白质和肽片段复合物的分子间结构提供了一种有用的方法。

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