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界面特性和铁结合促进磁铁矿纳米晶体生长的细菌蛋白:X 射线反射率和表面光谱研究。

Interfacial properties and iron binding to bacterial proteins that promote the growth of magnetite nanocrystals: X-ray reflectivity and surface spectroscopy studies.

机构信息

Ames Laboratory, and Department of Physics and Astronomy, Iowa State University, Ames, Iowa 50011, United States.

出版信息

Langmuir. 2012 Mar 6;28(9):4274-82. doi: 10.1021/la205074n. Epub 2012 Feb 27.

Abstract

Surface sensitive X-ray scattering and spectroscopic studies have been conducted to determine structural properties of Mms6, the protein in Magnetospirillum magneticum AMB-1 that is implicated as promoter of magnetite nanocrystals growth. Surface pressure versus molecular area isotherms indicate Mms6 forms stable monolayers at the aqueous/vapor interface that are strongly affected by ionic conditions of the subphase. Analysis of X-ray reflectivity from the monolayers shows that the protein conformation at the interface depends on surface pressure and on the presence of ions in the solutions, in particular of iron ions and its complexes. X-ray fluorescence at grazing angles of incidence from the same monolayers allows quantitative determination of surface bound ions to the protein showing that ferric iron binds to Mms6 at higher densities compared to other ions such as Fe(2+) or La(3+) under similar buffer conditions.

摘要

表面敏感 X 射线散射和光谱研究已经进行,以确定 Mms6 的结构特性,Mms6 是磁螺菌 AMB-1 中的一种蛋白质,被认为是磁铁矿纳米晶体生长的促进剂。表面压与分子面积等温线表明,Mms6 在水/气界面形成稳定的单层,其强烈受亚相离子条件的影响。对单层的 X 射线反射分析表明,界面处的蛋白质构象取决于表面压力和溶液中的离子存在,特别是铁离子及其配合物。来自同一单层的掠角 X 射线荧光允许对表面结合离子到蛋白质的定量测定,表明与其他离子(如 Fe(2+)或 La(3+))相比,在类似的缓冲条件下,铁离子以更高的密度与 Mms6 结合。

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