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首页> 外文期刊>Vibrational Spectroscopy: An International Journal devoted to Applications of Infrared and Raman Spectroscopy >Raman optical activity of flagellar filaments of Salmonella: Unusually intense ROA from L-type self-assembled protein filaments and their possible higher level chiral organization
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Raman optical activity of flagellar filaments of Salmonella: Unusually intense ROA from L-type self-assembled protein filaments and their possible higher level chiral organization

机译:沙门氏菌的鞭毛长丝的拉曼光学活性:来自L型自组装蛋白长丝的异常激烈的ROA及其可能的更高水平的手性组织

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摘要

The flagellar filament of Salmonella is an assembly of a single protein, flagellin. There are different helical and straight shape filaments from wild type and mutants. Raman and Raman optical activity (ROA) spectroscopies were employed to characterize the structure of flagellar filaments. The Raman spectra of normal and two straight filaments were almost same, but in the ROA spectra, intensive ROA peaks at amide I, amide III and skeletal vibrational regions were observed from only one of two straight filaments, L-type straight filaments. When the filaments were depolymerized or fragmented, the ROA bands disappeared on the scale of the large ROA intensities. It is thought that the ROA bands of L-type flagellar filaments are related to their shape, length and possible higher level chiral organization.
机译:沙门氏菌的鞭毛丝是单一蛋白质,鞭毛蛋白的组装。 野生型和突变体有不同的螺旋和直形长丝。 拉曼和拉曼光学活性(ROA)光谱用来表征鞭毛长丝的结构。 正常和两个直丝的拉曼光谱几乎是相同的,但在ROA光谱中,从酰胺I,酰胺III和骨骼振动区域的强化ROA峰被从两个直线长丝中的一种,L型直线细丝观察。 当长丝溶解或碎片后,ROA带在大ROA强度的规模上消失。 据认为,L型鞭毛长丝的ROA带与其形状,长度和可能的更高水平的手性组织有关。

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